Transcript
!#" $%" '&( " " &( *) + ,.-0/ 1 2 $%3 4 567*8 8 9 :2;<>=@A? $?;@'5+;<(BA1,C%.$FGI[Ijx=KN$+;F[gh$#&%4? ?;),K,K,IG$gh$#&%4C19&J2%.,h 3`1,C%.$F[IGI9EC$#TK,+.C?.C#e%.$1
FG#z~"t ,>+;CS3F[=Wz*~D9&JyjteIH'*1J3?.=MZ$F['51,)^? ?;),ghg'5+;F[C$?v%.,K,&J3?.F[<$'5IDgh-5%4FpS5'¡M %.F[-7#7=KN$+.FGg/C#&%('5ID+;$?.)IG%4?W>,FG<(FG#,?.K,FG+.C1L%.,>K,+.-¡:;$F[#,6sFG%.??.C#,?.Fp%4FGS&M Fp%ZJ %4-`C#&%('5),+;-7?$&?Q%4+.'5#,67CI[C%.? '5#1-5%4$+ ¢-*%4F[<£K,,C#,-7gh$#D't F[g8),IH'*%.F[-7#?¤-5UE$#&%('*),+.- =S7$#&%.? ,'S5f9N$C#
1,-7#f9&Jgh@'5#,?-5Uv-7),+l$#&%('*),+.-/67$#,C+4'*%.-7+0Xk`jksDW>,F[<(D'5?9EC$#21$?.,K,+;-7KE-5?.$1§¦;=-5%.F[<$¨/K,&J3?.F['5#12%4,fL%.$I[C?.jxª=KN$+.FGg/C#&%¢AD'5?09N$C#
K,+;$?.C#&%4$1«9&JjtuIH'*1J3?.=MZ$F['51,)^? '*% %.,8x
eM¬b@'@SeJ2Z-5#«xCC%4FG#,6Z#&%.$+.#,'*%4FG-7#D'5I¤®-7+.¯e?.-7K2-7#2]eJ3?;F[<$?'5#,12c$<(#,F[°e),C?0UV-7+>%4, a±b0²'5#,1TblQ³j KN$+;F[gh$#&%4?CECI[K,F±5´7´7zµ*~"t , ¶<@'5IG-7+.FGg/=%4$+^K,+;-5%4-*%ZJKN$?D'@S79N$C#i<$-7#?;%4+;),FG%4/$IG$#
F[#T»vFG6,tl|5t®f,'S5f%.$?;%.$12UV-5),+>+.@'*1,-7)%),#,Fp%4? -*U %4,8<@'5IG-7+.FGg/=%4$+CN'5+.+.'5#,67C1
?.FG1,=Mr9eJ&Mr?.F[1F[#TUV-7),+'*$F[g8)%4D'*I?;$|´ ?.'5ghK,I[FG#,62),#FG%4?Ctnj'*<(\?.'5ghK,I[FG#,62),#FG%67FpS7$?X%.,½DIGI[F[#68+4'%4F[-5?&¥tLÇ'5#15´LÇUV-7+ÈlM KIH'*%. '5#,1ÈlMr½D9+.$?-5K%4FG-7#,?$tv,`<@'5IG-7+.FGg/=%4$+£D'5?eÉ-5+.F[C#&%('*%.F[-7#i+;$I['*%4FpS70%.-%4, FGg/K,FG#,67FG#,6 K,'5+;%.F[<$IG$?CD?.-/%.,`%4-5%4'5I±I[$#65%4T-5Uv%.,8?;$<=%4-7+>W>FG%.2°e)D'5+Q%4sK,IH'*%.$?>WX'*?Ê´tµ7Ë,ÌÎÍCÏcÊ5tÆ¥LÐ É t FpC+.C#e%>-5K%4FG-7#,?>'5#,1%.$<(,#,FG<@'5I¤?;-7I[)%4F[-5#,?D'@S7s9EC$#TF[#&S7C?;%.F[6&'*%.$1uB'*??;,-W>#2FG#»F[6,t,t Z#ÑKD'*+;%4FG<$),I['5+$±W£D'@S7<(,C<(¯5$1R%4iI[FG67&%f%.+4'5#,?;g/Fp%.%4'5#,<$hF[#PI[F[65e%f67),FG1,$?sW>FG%.P%ZW-«1FGUHM UVC+.C#e%l+.=D$<=%4-7+;?$Òbl»cMZ+;CDC'5#,1'/67I['5?.?>+;CDCK,,-*%4-7g)IG%4FGK,I[FG$+;? !º]x?(A¢Ò0bl'5g'*g'*%.?.)2l&¥i'5#,1
]^F[I[FGK,?>× ]5Ø&¥5µtl®¶FG%.
$IG$<=%4+.-5#,?-5UC#,$+;67F[C?9NC%ZW£$$#P5´ '*#,1/5´7´s`=Ö7W£>D'@S7?;%4)1,F[C1' I[FG#,@'*+.FG%ZJf-5UE<@'5IG-7+.FGg/=%4C+v+.C?.KN-7#,?;W>Fp%4h$#,C+.65JL'*#,1/+;$I['*%4FpS7 C#,$+;65Jq+.C?.-7IG)%4FG-7#«UV-7+`°e)D'5+;%.y½D9,+.C?!"È0MZ»A'5#,1n°e)D'5+Q%4hK,IH'*%.$?/!ÈlMZ]£A¢t¤,h<@'5IG-7+.FGg/=%4$+lWX'5? KIH'5Fp%4
+;$?;KECF[+.0<(D'5g9N$+;?XF[#UV+;-7#&%X-5U¤%.,<$'5I[-7+;F[ghC%.$+WX'*?),?.C1 %.-Lg/$'5?.),+; %4,`$IG$<=%4+.-5#TFGg/K,'5A@0B6>, @=CD, =?E03 C>, .?F>3G, =H>I23JK3LFMN>3 C>O, =P4Q0QRTS%U'V)W X @/=GYFZ.0@"@6G\[], =3F1,;>!^P@ X 13CB_@0=2C3a`A,]>IY3 =31.^ X @01b>I3acF[ @01, Md3 >31b`A,;>I\ef/gF1h>iajgJ13CFC `3[][kFCO`A,;>Ief/gF1>ilB[ F>3 COF=GmFd.0@"@6GT13ong3co>pF=2c3q@ X Fsrb+kt!13 ng3 c >,]=. X @0, [)WubG2EF=c3 G\vwI@t >@0=,]cxu9v879CAC33 My>@zJK3{FqE31^13LF[], C>, cb@0B2>,]@0= X @01>I23[], .0I?>ht!13FG,]=.qG3oE6,]c3W|+g@0[][ @}`A, =.{>I3 13C/[]>CD@ X >I39>3C>CD>I3xMd@6G2,]jg3 GZE031C,]@0=T@ X >I3~|u96OxcLF[]@01,]M3o>31 "`A,;>IHuv
79CD,]=C>3LFG @ X v
PDCbF=GPr+kt13ong3co>, =2. X @, [<,]=C>3LFGT@ X >I3.0[ FCCDMd, 11@01, CDJK3,]=.zc@0=C, G3 13 GSUV)W
Lm9q8 < q\ 9mxwz wx-dLd
k @aC>/G2^s[ , =23LF1,]>!^z@ X FqcF[ @01, Md3 >31
13CB_@=C39`A,;>IZ3 =31.^HF=2GTFq13[ F>,;E03b3=3 1.^s13C@0[ /6>, @= >I39c 3=?>1F[CD~)+-,].W8408, =ZG2,]:_313 =?>AFi,]Mq/2>IgF[ C3 c >@1CDIgFLE03xJK33 =T3o¡6B_@C3GH>@q3[]3c >1@0= JK3LFMC¢@ X 3=231.^{4Q2£?Q2'¤0Q2f¥}QQ2f¥UQAF=G{4Q0QO¦x3 §lW}DI3813C/[]>C¨@ X 3 =31.^CcF==,]=.F=gF[;^"C3G X @1 X @0/1DcLF[ @01, Md3 >3 1|@0B6>, @=CgF13CI@}`A=P, =H>I3 X @0[][ @}`A, =2.{jg.0/213C 5 ¥0W9©ªp«o¬®'¯x©_°t|±9/gF1>iv8[ F>3.0[ FCCD13 ng3 c >@1KvwI, [], BCDv
Pxgc 3=?>1F[¨B_@, =?>b~5 +-, .CW8R2£2KU6W 46W9©ªp«o¬®'¯x© ²xt|±9/gF1>i+-, J13C .0[³FCCD13ong3co>@01 Kv8I2, [ ,]BCDv
Px c3 =?>1F[¢B_@0,]=?>b~5 +-, .CW8´2 µ" ¤2W R2W9©ªp«o¬®'¯x¶"²t|±9/gF1>i+, J13Cg.[³FCCD13 n3c >@01 rbFMFMsF'>C/Huv87qgc3=?>1F[¢BK@0, =?>b~5 +-, .CW8·2¥LQ2¥0¥0W £W9©ªp«o¬®'¯b©_°At
±9/gF1h>iv8[ F>36.[³FCC13 ng3 c >@1ubG2EF=c3 GTvwI@>@=, cbu9v87q6c 3=?>1F[KB_@0,]=?>A~5 +-, .CWD¥46<¥}R2¥L£2W R
¸9¹]º»¼¹ ½¾6»¹ ¿Àº¿Áº¹]Â0ÀgÃÄÃÅÆ2Ä ¹]»¾ÇÈ ºÉ¢ÃÁʻȼ¹ À?»¼¿"Ǿ˹]ÀÂZ»Ì2ÈdË ¾2»ºÃË Ë¿0¾2Àf»¹ ÀÂÃTƼ¿ÍgÄ Èa¿Á »ÌÈz½_ÈÃÅɨüÈa¹]ÀYÅd¿0ºh»ËLúȺºÎ"ÅÅdÈ »¼¹]ËzÃÀÇÐÏ|È Ä Ä-Í»»È Çѽ?ÎÐÃHÂ?þºº¹ ÃÀYÁÒ¾2ÀË »¹ ¿0ÀÔÓ)Õ¹ Â0º Öa×2É Ø É¨Ù2É8ÚÛ0ÜoÖzÝbºÎ"ÅÅdÈ »¼Î\¿ÁÁÒÈoÏÞǹ ºh»¼¹ ½¾2»¹ ¿0À2ºÏú{Ægü»Ä;ÎmËþºÈ Çѽ?Î\»Ì2ÈzÏA¹]ÇÈzºÆ¼ÈLÃÇY¿Á»ÌÈ ½KÈLÃÅN¹ ÀH»ÌȺÈ{Èoß0ÈÀ?»ºÖ àDÌÈbËLÃÄ]¿0¼¹]ÅÈo»È ¼w¼ÈºÆ_¿ÀºÈ»¾¼À2º|¿0¾2»
»¿{½_ÈbÄ ¹]ÀÈLü8¹]Àd»ÌÈÈâá2Æ2Ä ¿0¼ÈÇZÈ ÀȼÂÎd¼ÃÀÂÈÖwàDÌÈÃ}ß?ã È ¼ÃÂÈDº¹ ÂÀgÃÄgÃÅdÆÄ]¹]»¾2ÇÈä9åsæçÉ?Èoá6ƼȺºÈÇH¹]Àa¾À¹]»º8¿Á<ݸèéËpÌÃÀÀÈ Ä ºÉ"Ìgú8½KÈÈ ÀºÃ»¹]ºÁêÃËo»¿0¼¹ Ä]Î Í2»»È ÇP½?ÎZ»ÌÈxÁÒ¿0Ä Ä]¿}ÏA¹ ÀÂlÁÒ¿¼Åq¾Ä Ã2ë ä9åZæìîíxïÔðwñDò ÓhÚÜ ÏAÌ2ȼÈÈ ÀȼÂÎòÞ¹ ºDÈoá6ƼȺºÈǹ ÀPóÈoôqÖ àDÌÈxÍ»»È ÇPßÃÄ ¾2ȺD¿Ák»ÌÈÆgüÃÅdÈ »È¼ºOüÈxºÌ¿}ÏAÀP¹ ÀH»ÌÈàýÄ]ÈaÚ0Ö õAÈÄ Ã»¹;ß0ÈÈÀÈ ¼ÂμȺ¿Ä ¾2»¹ ¿0À¿Á-»ÌÈlËÃÄ ¿¼¹ ÅdÈ »È¼DÌgúb½KÈÈ Àmº»¾Ç¹ È Ç½?ÎPÃÀgÃÄ;Î"º¹ ºA¿Áö¨÷øùß"ºÖ øúÓûóxÈ ôxÜDÆ2Ä ¿»ºÉ2ÏA̹]ËpÌPÌÃ}ßÈ{½KÈÈ ÀÍ2»»È ÇP½?ÎH»!Ï¿Ç2¹]ü_È¼È À?»bÈâá6Æ¼È ºº¹]¿0ÀºlýÙ6É¢Ú}þ'ÿ)ë ö ò ì ï ò ÓûÛ0Ü ò ò Ó)×?Ü ö ò ì ÏAÌÈ ¼È»ÌÈÅüçÅÈÃÀº»ÌgûA»ÌÈx»È¼ÅdºDÌgÃLß0ȽKÈÈÀPÃÇÇ2Èǹ]Àf¾gÃǼû¾¼ÈÖ àD̼ÈÈ »È¼ÅdºÇ2È »È ¼Åd¹ ÀÈ »ÌÈ ËpÌüÃËo»È ¼¹ ºh»¹]ËÑ¿Áa»ÌÈ ÈÀ2ȼÂÎ¼È º¿0Ä]¾2»¹]¿0ÀÖ àDÌ2È Ë¿0À2º»pÃÀf» »È¼Å}É|Ë ¿0Åd¹ ÀÂ\ÁÒ¼¿Å »ÌÈÂ?ù]Àßü¹³Ã'»¹ ¿À ÏA¹]»Ì ËpÌgÃÀ2Â0¹ ÀÂÐß0¿Ä]»pÃÂ0ÈÃÀÇÔ»ÈÅdÆ_È ¼Ã»¾¼ÈÉ|Ä]¹ Åaã ¹;»ºz»ÌÈP¼È º¿0Ä]¾2»¹]¿0À û̹]Â0Ì ÈÀ2ȼ¹ Ⱥ Öúàk¿Ñ»Ì2Ⱥ»¿6ËpÌú»¹ ËP»È¼ Å dǾÈP»¿ ¹ À?»¼¹ À2º¹ ËTºÌ¿}Ï|È ¼ ¾Ë »¾gû¹]¿0Àº ÉkÆ2Ì¿»¿À ºh»pû¹ º»¹ Ë ºxË¿0À?»¼¹ ½¾6»Èº ÖàDÌ2 È »È ¼Å Ë ¿0À?»pù]Àºx»ÌÈzÀ¿¹ ºÈzË ¿0À?»¼¹]½¾2»¹ ¿0À ÁÒ¼¿0ÅNËÃÆgÃË ¹]»ÃÀËÈÃÀ2ÇÇü ZË ¾¼¼ÈÀ?»LÖ óxÈÀÈ ¼ÃÄ]Ä]ÎÉb½K¿»Ì ÁÒ¿0¼Åq¾Ä³ÃÈmºÃ»¹ ºhÁêÃË »¿0¼¹]Ä]ÎéÍ»T»ÌÈÐÇgÃ'»pà ÓêºÈ ÈÐà-ý2Ä ÈéÚÜoÖÞàDÌ2È ¹]ÅÆK¿0¼»ÃÀ?» ÆK¿0¹]Àf»¹ ºO»Ìgû»ÌÈqË ¿0Àºh»pÃÀ?»x»È ¼ Å ¹ ºbËÄ ¿ºÈl»¿TþÁÒ¿0¼xÃÄ]Ä¿Æ2»¹]¿0ÀºÖxÝbÄ º¿s»ÌÈlº»¿"ËpÌgúh»¹]Ëq»È¼Å âɽKȹ]ÀÂ\Ä È ººa»ÌÃÀ × ! ÁÒ¿0¼q»Ì2# È "$TºÈË »¿0¼zºÈ ÈÅdºd»¿Y½KÈH¼Èú¿ÀgýÄ]ÈÉ8ÏAÌÈÀ Ë¿0ÅdÆgüÈÇ»¿ ì Ó)× &Ø % ( Û ' þ % Û0)Ü !ZÉk¿0½2»pù ÀÈ Ç ¹]À ý Ú0ÚÿwÁÒ¿0¼x»ÌÈËÃÄ ¿¼¹ ÅdÈ »È¼9Æ2¼¿»¿»!Î"Æ_Èd¿Áº¹ Åd¹ Ä Ã¼Â0È ¿0ÅdÈ »¼hÎ ÃÀÇH»ÈËpÌ2À¿0Ä ¿ÂÎ0Ö8àDÌȼÈÃÇ¿0¾2»A½?ÎTÆÌ2¿»¿"ǹ ¿"ÇÈ ºDÄ ÈLÃǺ») ¿ A»È¼ÅPÉ2ÅÈú¾¼ÈÇT»¿z½KÈdÚÖ Û *zóxÈ ô ÃÀ, Ç +-Ö *sóxÈ ô ÁÒ¿0¼OÝÇ2ßÃÀ2ËÈ# Ç .8Ì2¿»¿0À2¹ Ë/Ý .8¸ ÃÀ, Ç 0ÃÅÃÅûº¾P1Ý .8¸ç¼È ºÆKÈË »¹]ßÈÄ]Î3Ö 2»bºÌ2¿0¾Ä Ç ½KÈÀ¿»ÈÇT»ÌgûA»ÌÈ/Ý .8¸9ºÃ¼Èxß0È ¼ÎTºÈ Àº¹;»¹;ß0È»¿z½_¿»ÌTß0¿0Ä;»pÃÂ0ÈÃÀÇP»ÈÅdÆ_È ¼Ã»¾¼ÈxËpÌgÃÀÂ0Ⱥb½¾2» ¹]ÀZ»Ì¹]ºD»Èºh»A»ÌÈ ¼ÈxÏúbÀ¿a»Ìȹ]¼Dº»pý¹ Ä]5¹ 4LÃ'»¹ ¿ÀÖ 6
798;:1<
=?>@=?(87 ;@/0A0 B$;C-.ED/FG3IHJ,K9L.M;N'O(8P/.M0 A Q/R@S(8T8(+U/AVRW X2QKB 0%7Y;.9LTZU[C-(+7;E\^]
S2 - Quartz Fibres, glass, Philips PMT 0.11 0.1 0.09
s /E » 46 %/ E
s /E
0.08 0.07 0.06 0.05 0.04 0.03 0.06
0.08
0.1
0.12
0.14 0.16 1/ E
0.18
0.2
0.22
0.24
'O(8*-,/.M0_S3Z`7/0 .M*:=a.0 AMC-T8,4;(8C:7b(+7a;@/0cAM0 B$;C-.)D/F43OHJ,K9:.d;Nc')(8P/.M0 A%Q-R@/(8T+(8U/AeRW X2QfB 0%7Y;.9LT4U[C-(87Y;)\^] X gcCih/;A^9L.0aA@/CjgV7k3 lemLnoqpKrstpvumw nyx>PSTz9:B{?T+(87/0}|[lem:n~oqp/rpvuMmw np/mw nxI.0 /9:A@/0% T+(87/0L] _
Run 85, 20 GeV
Run 86, 40 GeV
900 700
800 700
htemp
Entries Mean RMS 2 c / ndf Constant Mean Sigma
600 500 400
600
17908 59.41 8.484 57.35 / 70 851.2 – 7.9 59.9 – 0.1 8.367 – 0.046
Entries Mean RMS 2 c / ndf Constant Mean Sigma
500 400
htemp
17707 78.95 10.2 73.83 / 52 740.1 – 7.0 79.48 – 0.07 9.437 – 0.055
300
300
200
200
100
100 0
40
60
80
100
120
0
40
60
80
100
120
140
160
Run 61, 100 GeV
Run 48, 80 GeV 300
800 700
250 Entries Mean RMS 2 c / ndf Constant Mean Sigma
200
¡%8-M /%e:%-%¯M: : ®-M%%8% ¬%-[4$¬ [a:KJ «JªtLiLi:E)©%:8-e %/+)
¨MLKJ§t¦G¥}¤-$ }/ I:£ b+-[ :Y S ¢ ¡+ /S:K J+ M%/4$) S/<8/:c:K-+":a/-8S/+d8JiS?M/-8O
Energy Scan, J2-C, QF, APD1
150
htemp
5319 149.8 15.12 56.14 / 44 311.9 – 5.6 149.9 – 0.2 13.3 – 0.2
htemp Entries Mean RMS 2 c / ndf Constant Mean Sigma
600 500 400
26145 156.8 13.9 74.21 / 67 784.7 – 6.2 157 – 0.1 13.17 – 0.07
300
100
200 50 0
100 80
100
120
140
160
180
200
220
240
260
280
0
100
120
140
Run 53, 150 GeV
160
180
200
220
240
260
Run 54, 200 GeV
1000
140
htemp
800
Entries Mean RMS
600
htemp
120
16810 239 24.17
Entries Mean RMS 2 c / ndf Constant Mean Sigma
100 80
3459 312.2 22.44 101.9 / 88 131.5 – 2.9 313 – 0.4 20.37 – 0.27
60
400
40 200
0
20 150
200
250
300
350
400
0
250
300
350
400
450
adc13
J2 - Quartz Fibres, glass, APD1) 350 300
c 2 = 6.5/4 a = 29.8 – 3.3
250 Response
b = 1.38 – 0.06
200 150 100 50 20
40
60
80
100 120 140 Energy (GeV)
160
180
200
°)±+²-³/´Mµ·¶j¸S¹º6±8»/µ ¼:´±<½>¾i±+» ½¿/µÀµ%Á%½Â-´JÃYÄG¹Å2³/¼:´M½Æb°O±8Ç/´Mµ À È/É^¼:Ê˼:Ê˼L½ÀM³ ÌJÍÎÏÈKÁ µ%»½´¼:Ð6Ñ[Â-±+»½EÒ^Ó J2 - Quartz Fibres, glass, APD1 0.3
s /E
0.25
s /E » 96%/ E
0.2
0.15 0.1 0.05
0.06
0.08
0.1
0.12
0.14 0.16 1/ E
0.18
0.2
0.22
0.24
°O±8²-³/´Mµ}¶-¶-¹Ô»/µ%´²:¾Õ´Mµ ÀÂ:Ð8³S½±8Â-»Õ±8»½¿/µbÀµ%Á%½Â:´2ÃYÄ4¹Å2³/¼:´M½Æ°)±+Ç/´µ%À È[É^¼LÊi¼:Ê˼L½À³ÕÌJÍÎÏÈÁ µ »Y½´¼:Ð [Ñ Â-±+»½Ò^Ó-Ö×IÂØ/½Àc¼L´µ À¿SÂÙ×V»v¹ÚeÛ:Ü£ÝßÞ/àSáÏÞvâMÛYã Üåä>ÇSÐz¼:ÁæbÐ8±8»Sµ^çÚeÛ:Ü£ÝßÞ/àSè·ÞvâÛã Üéè}Þ/ê$Ûã Ü ä´Mµ ëÕëK¼:ÀM¿/µ ëÕÐ8±+»/µ:Ó ¶j¸
%ö8ñ-íMî ð/ñ%úZ ñ Lýü ð:ñ!Mñ)ö:ûVùö:þü [ñø-úùð%÷8ñ ý}ñù÷ ñ-ö[ù4ÿñ ú%ñ®ñø:ö/ü' &õ %$Sí-úù:÷Sù #%ñ:úLü"! öLözü-ýYîñL÷8üýM÷:ð/ü2ï :ðù%÷ñ ö/ñ ÷:ûß ù ÷+ú-í[ùÿ :ýüðY÷ ú ñ/ñ +ö ý/ñ/úLúKü
^ õ +úíMñö öMñ/ð4ÿ6ñ ö/ñï+÷+í/ýËÿLþü:ýKü-ú+îícö:ûJù/ö:ú8ùí4÷/ï8øMíðM÷+öJíaõ4ôÙó?òMñ/ð-ï8îOíì
-òò
Run 108, 20 GeV
Run 107, 40 GeV 900
400 350 Entries Mean RMS c 2 / ndf Constant Mean Sigma
300 250 200
800
htemp
7238 119.8 8.211 81.05 / 71 365.7 – 5.2 120.3 – 0.1 7.81 – 0.06
700
Entries Mean RMS c 2 / ndf Constant Mean Sigma
600 500 400
150
htemp
11919 205.1 12.51 133.7 / 71 844 – 9.7 205.7 – 0.1 11.14 – 0.08
300
100
200
50 0
100 60
80
100
120
140
160
180
0
120
140
160
180
Run 109, 80 GeV
200
220
240
260
280
300
320
Run 110, 100 GeV 350
500 Entries Mean RMS c 2 / ndf Constant Mean Sigma
400 300
htemp
300
11798 383.5 18.02 109.9 / 90 550.8 – 6.3 384.1 – 0.2 16.93 – 0.11
Entries Mean RMS c 2 / ndf Constant Mean Sigma
250 200
htemp
8392 469.7 21.59 51.68 / 41 343.6 – 4.9 470.4 – 0.2 19.07 – 0.20
150
200
100
100
50
0
250
300
350
400
450
500
0
350
400
450
500
550
Run 111, 150 GeV 400 350 Entries Mean RMS c 2 / ndf Constant Mean Sigma
300 250 200
htemp
6333 681.1 32.5 39.5 / 30 359.5 – 6.0 681.9 – 0.4 27.28 – 0.32
Energy Scan, S1-C Quartz Fibres, APD2
150 100 50 0 500
550
600
650
700
750
800
850
900
600
adc13
S1 - Quartz Plate, glass, APD2 700 600
c 2 = 2.3/3
500
a = 32.52 – 2.35
Response
b = 4.35 – 0.054
400 300 200 100 20
40
60
80 100 Energy (GeV)
120
140
160
(')+*-,./1032"456)$7/8.):9<;#)+7=9>/ ?/@9BA.DCE4GFH,I8.J9BK LNMO8P9B/Q"RHLS TUQI@/7V9B.B8M6WA-)+7V9YX Z
S1 - Quartz Plate, glass, APD2 0.1 0.09
s /E
0.08
s /E » 26 %/ E
0.07
0.06 0.05 0.04 0.08
0.1
0.12
0.14
0.16 1/ E
0.18
0.2
0.22
0.24
( )$*-,.\/#03]"4_^N7/.\*;`./?A-M+,"9B)+A-7`)$7a9>/1?/@9A-.1CE4 FH,I8.\9KbLNMO89/QcRYd"e87@/dfLN>A9BA-7)+@1RHLSgQ [ @/7V9B.8MWhA-)$7V9GX Zi%jkA l9B?8./?>"Amj7n4porqsutwvxzy{vn|qz} s~<M$8@{M+)$7/Yo6qsutwvIxgvn|qz} s` v
q } s~G.\/ddI8?\>/dM$)$7"/Z
0mT
k$ \\$hz \$B=-¡ ¢m£\-:<¤g$V¥\$¦VPB§h-$VB¨ª© \ ¢B\$ "$\+"B+-\«-:g-G§$VB+-NB¬I«¯®° ±- B¬²3+-+ ¢BN-"B¦- %B¬ --\¨ ³ +¦¨´mµg¬"m²§"g¶B¬"°3¥B¦-°$$ %\\§-"°$B:¥-_\$"$- ·¸r¹º{» -«¬_$J"_¼½ ¾¬H3$-\$ B¿VBÀ-¿B¬¡VBB6¡h-"%§h-$V¨ Á ¬"{§§h²§+B"{\¬ÂH-\$IPB'B¬°§-+VBÀÃ-\IJ¬{h3 Å+ ¢§²§h-$V §h-\+B+-c¨ÆÇ $²aB¬IPH§h-$VB ÈÀ ³ ÀÉ#§$$:¡$+°P B¬"{"¦-gp¬{$$ ¨ Á ¬ $\#\$¦-k ¢§++°{¿+%{$JB\$"$-Ê$UB¬{:B¬Ë¼ÌÍ#3\ËVÎ $BB¶§"3k«h3 ¨ ³ -H$¦-{¼Ï«\JVB$p§I\_Gh3 Ð+B_$H"B\$1 ¬g$-\$ ²B- `3`Ñ+["$+=B«¬1$+¦-¬V ¦-"$¨ Á ¬1§+B"1 B¬1\$¦-¬V +Âk°§If¬"m°B¬I ¬#\OPB+¥b¦-+"B+-§BB+3++a"U{D§Í-B¬ §h-\+B+-¡[B¬ $ §I§$VB · :B¬ÒU§"B+-'¬°§h-+zÈÀ ³ ÀhÉ"ÀI$3=¥-J=+-_B ¬ 3+-+ ¢Bk"¦- » +%$B¬"D+¥6p±Ó¨ÕÔ¢Öª-_´Â×-×_Øu+B¨ ÙÚÇÛ
Ü°ÝßÞÍÜ_Û±à6áIâ¿ãUãwä"åæJç
´3×g§-+VB · _´´Â®°è´mé-é » À"+UB=+\BYêëéU¨íìmèî®VéD ¢ ª- ªB¬"gïð ·ñ_ò À¦-$ »ó ïÃô ·ñ ³ Àr¦-O\ » B{h-Àp¬Â¥«hfÒU§Îa+Bfh3 õ\¦÷ö-×a_Ø{¨ Á ¬ \$ g"+-"D\3"-"gB¬Î\-{¬I3¥-«hÎ-¢Vf©Y"¥ ò ¬B$© òø ù ¢ #PB òGú Á $wïð#wïÃô«§hB+¥:-¨ Á ¬#§"§{$û{§f ³ $¦¨`´3ö¬"m°B¬ U+IB'I¬% 3\1§$VBÀ$°B¬%$$ 6B ¢À¬1-\B1-¶B¬k + ¢§ §-+V_§+$-n¨ Á ¬"J #\üzHB¬1U-\$BHGB¬1h-"_§h-$V3Àn<kËïð ÷ïÃôg\B-\ÀÄ\- ŧh"1N\$¦-Ir ¢§"$+²Äý ·OþD» -+I · $¿ § » ¨ ³ +¦¨ë´ÂÿÎ\¬Â¡B¬I«$JB+"$-D+¦-IY §$:B"#+¤B¬"ÎïÃô\B-À²-¢§$VB "$\B÷\- B¬¢B{h-° -\¬IÍ ö À'\¢J ¢ JB$ · \$ » Î +3üP¦ #B¬"¢ïð°\-H+Y¦-$+¦-$"$¨ Á ¬gO+¥°\¦Ä\\-$"$- ¸r¹º $²NB¬"{-\ é¨íÿÖ¾-ö×¢_Øu$B\-¨ Á ¬#-\¥Í$üP¦-<kïð#"¤ïÃô¡Bg+°\¬ÂÍ$ ³ $¦-¨Äé×ÄÍéU´-¨ ø è §h"= B¬"`3+-+ ¢B§h-\À +3üP¦ÄBB+-\$B:¥-a\¦ \$"$- ¸6ó §h-²-B¬²$J" - B¬²B¿h-"ÀV-ïð · " ´-´3öPè´mé´ » ïÃô \- · "´-´3®a袴-´ÂµUÀ ´méé » =¬"m¤$ ³ $¦¨ é-é¨ k$=BÊB¬B¢h-"À¿B¬ Ê$+¦-¬V "B§U =¦=\$"$-\°1++$YB²HïÃôè ñ IJ ³ +B-²BB ù ¢ #PB ò¿ú Á ·Ñ¸6¹º ê¯é Õÿ°Ö » ¬Ig-%ïðè ñ \ ò OBN-"bB © U¥ ò ¬B-+_© òøÌ·¸r¹º êßÓ íìÖ » ¨©%Y"$\BÒU+¦¡ ´Ó ÌbOPBn+3üP¦HBbB¬ "$¦¬h-\$¦1\B-\Y+§BB+3++¦$$¦$+¨
ÙÚ Ù
fâ HåNáîã"âõâ Ý Û±å
Ü°Ý ã rànäâGáIã
³ -- ¢§+-¢cB¬" :- +<g63$-\$ B\§À"¥-Bc§h-+z¿+UB«¿ nJè V§O¿rB¬YB\3{¬I3¥_=ÒU§h-=g+B« ¾r¦«ö-×1_Ø{¨ Á ¬ §h-+zN©²è<ÈÎB¬ $"$% "ð ô =ïð²-¿§$VBÓè<öDPG¬G§\GB¬ ïð \B- · ³ $¦¨Né » ¬I3¥_=\$c¨N© +\B-\¬I3¥-_h=-B¡B ù # # òGú Á ¨ ø +\$""B+-%[+¦-I+\D\¬ÂÄ+=¬_-$+Â$¦DI¦-\
"!
éU¨ ôDè
IJ
´-¨ "ð_è ñ IJ ñ
&%
$#
³ $"À"-+ À ù ¢ ¢B\ ò¿ú Á À ³ $¦¨é®
%
³ $"À¦-$À ù ¢ ¢B\ òGú Á À ³ $¦¨NéÓ ´Â®
'&()+*-, ./103254687:9;0"4<3=&>?9;03@A@$=BC03DE0FDE0F4@/G7HJI-=@ (V?WYX Z ()+*-, ./103254687:9;0"4<3=&>?9;03@A@$=BC03DE0FDE0F4@/G7HJI-=@&(V3^&( _a` DbDb?O1039T03Dih&9]SU4/ \ ?<032A?3kY[RM?/ 2AS]O >c@A<$Ko4M?2L= gsM?2[+M32\ ?kP4:M?/&4h /&4 03O \i02A<$9;0"4SU3 ` 2A<$@M39]/&4S]M?OcgsM?2039U9 @A4/ \ S]3@$(V?l03O&\VFtm2A<$@Ah+3ka4NM3/&4h /4NS]@y4k&<-k S]>?k&<$@A4NSUO4k 39;03@A@v @A<$Ko4M?2L= 03O \iSU4S]@h 20FKL4SUK039U9 ` 4k ` 2<$@AM?9]/4S]M3OSU@E0F9]DbM?@A4mSUO \ <$hR<$O&\ <$OP4qMFgp4k&<hRM?@S4S]M3OMFgp4k&?9]03@@vy03O \nwqr.-Q¦,>?9;03@A@v @A<$KL4M?2@C03O \§'&(¢W£, Z (©¨b¥ gsM32ªPVr«.-Q¦,gsM?SU9¬v}4Mbt?¨id8?>?<$@54@p4k10F40EK039UM?2SUDilM?h&4S]M?O= 039U4k M?/ >?kS4NO <$?0F4SUM?O( » d8MYMY\9]S]O&<032ASU4 ` M3gT2A<$@Ah+M?O&@<8NSU4kG ` S]@M?[&@<$25?3SU??kP4M?/4h /&4N4k103OG<$¹a/10394k S]KaO (V?3vo( »½{y¼ 4
` ` 2<$@AM?9]/4S]M3O=Vf¥q=4Met3¨nd8&(ÀV3tPvÂ( M?Dbh1032SUO >b¹Y/ 032A46ºh 9]0F4e4k <@03Di<>?9]03@@b23ka4b>?/&S]\ ?@L(ÄWe03O \½t&= IT0F[ 9]?k <$O ?SU<$@L=SU@i9U<$@A@E4k10FOÈ £¥³S]O[+M34k¾M?h&4S]M?O&@$(ÄIk ?O ` k SU4A4SUO >À4k < { _ IÍ ¼ S]OÌ7:[Î-7:[ K$M?9U9]SU@S]M3O @0F4º4k <~B r« Z ¨I J4MJ4k <B5ª3uÏdÐh 2 ` SU@-?k&<$2 4k10FO¾@?<$M3Di ` ÔÛ ? LÖ«(ÜÍ-O 4k ?O ` =~[ /4-4k ?? &'
:@
%
B687C9
D?
b
A&
jk on [p
A*
G^_.*
)
jr0p s*5t.;ue?"\t
bg
ml
/; tdvwGt
/h
, ~ ! , # ! d ~ , # ! |/ y # . ~ | q # U ~ ~ ! / y . ~ u
G # ~ . } |{z y x
§ s¦ ¥ ¤ ! |. y R q , £ + ¢ ¡ # |y|j y # ¡ # ~ |z y x ! d ~
} ¨
Run 69, point A 800 700
Area Scan, S2-Quartz Fibres, 100 GeV
600 500 400
Sector centre, Philips PMT
htemp
Entries Mean RMS 2 c / ndf Constant Mean Sigma
20630 435 21.53 58.88 / 57 792.7 – 7.0 435.8 – 0.1 20.61 – 0.11
300 200 100 0
300
350
400
Run 70, point B
450
500
Run 66, point C 350
800
300
700 600
Entries Mean RMS 2 c / ndf Constant Mean Sigma
500 400
htemp
Entries Mean RMS 2 c / ndf Constant Mean Sigma
250
20476 453.9 22.54 95.5 / 62 764.6 – 6.8 454.3 – 0.2 21.15 – 0.12
200
htemp
9126 484.8 24.32 80.43 / 62 319.4 – 4.2 485 – 0.2 22.42 – 0.19
150
300
100
200
50
100 0
300
350
400
450
500
550
0 300
350
400
Run 67, point D
500
550
Run 68, point E
250
80 70
200
150
450
Entries Mean RMS 2 c / ndf Constant Mean Sigma
htemp
60
3712 526.5 29.33 35.97 / 30 228.4 – 4.8 525.5 – 0.5 24.89 – 0.36
50 40
100
Entries Mean RMS 2 c / ndf Constant Mean Sigma
htemp
2532 869.2 178.9 54.13 / 51 73.23 – 2.03 897.8 – 3.3 139.4 – 3.0
30 20
50
10 0 300
350
400
450
500
550
600
0
400
600
800
1000
1200
adc15
Ê ¸ ® # Éw ª » © ! È Ç· ³ ¬ ` Æ ± Å Ä Ã ! µ · À ® » ¸ # ® ! Â Á · ºB ª j ¸ . º µ · À ® ´ ¿ ® ¾ q ® , ½ . ¼ ¼ ¯ ! µ » · ® # ¸ . º R µ ¹ ¸ ® ! ® · / ® ¶ ª . µ ´ u ³ B ² j ± ° < ¯ ®# . ¬ |«z ª ©
Î ¸. ! µ · À ® ¸ U Ö Ã # Ò º ` ³ Å [ à d Õ µ # ® Ò. U µ É # ®  » · µ · ® . ¸ µ ´ À ® d u ³ B Ô Ó # Ò º Ä ³ ÇÑJ Ð ©` Ï ! ¸ · |º ª z µ Ë q Î , Í + Ì Ë # ¸ ¹|ª´# ª f  Ë
× ¯ G
Area Scan, S2-QF, Philips, 100 GeV Run 71, point I
800
Run 72, point H 1400
700
1200
600 Entries Mean RMS 2 c / ndf Constant Mean Sigma
500 400 300
htemp
1000
19362 448.9 22.37 65.26 / 67 719.7 – 6.4 449.7 – 0.2 21.31 – 0.11
600
200
400
100
200
0
300
350
Entries Mean RMS 2 c / ndf Constant Mean Sigma
800
400
450
500
550
0
htemp
19443 470.4 23.57 43.73 / 34 1377 – 12.4 470.6 – 0.2 22.37 – 0.12
350
400
450
Run 73, point G
550
600
Run 74, point F
500
100
400
Entries Mean RMS 2 c / ndf Constant Mean Sigma
300
200
htemp
80
8458 532.9 32.26 30.92 / 29 495 – 7.3 530 – 0.4 25.32 – 0.31
Entries Mean RMS 2 c / ndf Constant Mean Sigma
60
htemp
3934 844.8 177.5 71.43 / 63 92.85 – 2.02 879.7 – 2.7 141.2 – 2.4
40
100
0
500
20
300
350
400
450
500
550
600
650
0
300
400
500
600
700
Run 75, point J
800
900
1000
1100
1200
Run 76, point 0
120 120 100 Entries Mean RMS 2 c / ndf Constant Mean Sigma
80 60
htemp
100 4771 823.3 161.8 82.92 / 69 116.2 – 2.2 842.2 – 2.3 140.4 – 1.9
60
40
htemp
2563 517.5 29.7 33.81 / 30 122.7 – 3.3 514.4 – 0.7 22.64 – 0.50
40
20 0
Entries Mean RMS 2 c / ndf Constant Mean Sigma
80
20
300
400
500
600
700
800
900
1000
1100
1200
0
350
400
450
500
550
600
adc15
Ý ! # ê é
Response [ADC ch.]
ï çóÜò . è ñ Ý # æ ä ! ë é|íj Ù S å # Ý ê ð é . ä Á ç # Ý # å Û éÙ# î / ã d ï ` ë d î ë . ä |ÚÙ í . Ý Ú ë Ü Ý ì S ë # Ý ! ê X é è ç Ý j æ ä # Ý # å ä U Ý ã Ý k â á G à ß Þ Ý# Ü . Û |Úz Ù Ø
ÿ : ä #çê í Ý d Ü ë ú í ô é ä. Ù R ç ã ÜjÝå.ÜRç ù # Ý ! ê < é # å ä ë
îë!ÜéäÝ æ # Ý ! ê _ é # Ú ä! Ù éé# Ù # ê þ ú ï ë U Ý @ ù . ä ç! Ü é æ |Ý î Ý q Ý Á Þ ç _ é Ý # í . ä R ç ã í " Ý q ÿ þ ý [ ü 0 û # í |ãÙ|î# Ù f ê 2 û ú í Ý# Ü |ùw Ù _ Ø ! ø éd Ü ë Û q ÷ á ö _ õ . Ü ç é æ Ý í # Ý ! ê , é |ä Ù Ü Ý ô é ä Ý " æ Ü Ý é » Ý |ï Ù Ü |ç î ë æ
Þ
900
800
border
700
600
0.045
40 60 s /Response
Philips PMT, 100 GeV
80 R (mm) 100 120
Y (mm)
120
40
1000
center
500
400 140 0.03
E
100
S2
Area Scan, S2-Quartz Fibres, 80
60
30
40
D
C
B
40
60
50
80
F
G
I
60 X (mm)
R (mm)
70
0.065 0.06
100
J
O
H
S1
A 80
120
90 100
0.07
center border
0.055 0.05
0.04
0.035
140
60
70
121
60
50
50 Y (mm) 40 200
100
200
100
Y (mm)
50 30
X (mm)
40
Leakage between S1 and S2
0 10
400
20
S2 Response [ADC ch.]
S1(QP) - S2(QF) cross talk
S1
60
0
300
300
500 500
30
S1 600 600
10
30
40
50
60
400
30 20
S2
Leakage between S1 and S2
X (mm)
40
S1
S2
118 117 116 115 122 114 113 70
Scan points, S2-S1 sectors, 80 GeV
119
120
Response [ADC ch.]
"!$#%'&)(+*-,/.0/12!435!670!809:.; 80!=<>86?@BADCEGF6.>.0H /;I*J30!686KL;M35NO!=80!6F435."86&QPSRTAU)VKSWXVZY\[E *J; H]P_^TAU)`KSab*J1$*-12*J3080MV cedGEfg.b8"!<!5*-,h9S./;i358X*j3)H 8k3l*-;OF6!68)mn['?porqs['?ptu121vfg".1w35N ! 8"!6F435.yx:.0H !6?zd{N ! 9O9S!u,/!fD3=9 *-H|8"N .}8u30N !9S.-80/30.;].-f730N !9S.-;i358=/;~35N !F*J,."1u!35! fg0*-1u!-K{F6.-00!F30!6Hfg.230N !Mx:!*-1 1u9I*-F43$9:./;3086?d{N !8k3l*-21$*J08$35NO!MF6.>.0HO;I*J30!682.-f\35N ! 8"!6F435."8
x:.0H !9:./;36Kfg.O; Hfg".1H !69:!6;OH !6; #F !.-f{8";I*J,Z*-129O,/30 H !8.-;@yACE\F6.>.0H /;I*J30!68 Ag,.}!6{9 ,/.-3585E4?
·6 "¯S\ ¦ 0¶ "g¶ u Q iµ´
³ ² ± b ° 66O-lk ¯ J 0i: ® gG G ¬ T « ª T © "5J2 -2 -b S¨6§0 /¦h
0¥"- ) £¤ ¢ _¡\ 5460 5
0 :00{ 5u "J+ { Oy "
-¸µ
Run 113 450
S2, Quartz Fibres, Hamamatsu PMT
400 350
No leakage to S1
Entries Mean RMS 2 c / ndf Constant Mean Sigma
300 250
htemp
8793 567.8 16.89 47.14 / 51 433.3 – 5.8 568.5 – 0.2 16.07 – 0.13
200 150
» 0.029 at 80 GeV
100 50 0
400
450
500
600
Run 122
Run 114
350
550
400 300
350
250
Entries Mean RMS 2 c / ndf Constant Mean Sigma
200 150
htemp
Entries Mean RMS 2 c / ndf Constant Mean Sigma
300
6594 562.1 17.22 62.93 / 72 324.2 – 5.0 562.9 – 0.2 16.08 – 0.14
250 200
htemp
7810 560.8 16.82 68.36 / 46 382 – 5.4 561.5 – 0.2 16.15 – 0.14
150
100
100
50
50
0
400
450
500
550
0 400
600
450
500
Run 115
550
600
Run 116
400 400
350
350 300 Entries Mean RMS 2 c / ndf Constant Mean Sigma
250 200
htemp
300
7615 558.7 16.72 62.98 / 66 370.6 – 5.3 558.8 – 0.2 16.27 – 0.14
250 200
150
htemp
7691 553.2 16.54 50.14 / 66 378.4 – 5.4 553.9 – 0.2 16.12 – 0.13
150
100
100
50 0 420
Entries Mean RMS 2 c / ndf Constant Mean Sigma
50 440
460
480
500
520
540
560
580
600
620
640
adc15
0
420
440
460
480
500
520
540
560
580
600
620
adc15
6á½¾ 0Ù½:Æ\ ç ¾ 5Íæ È Ç0Æg½æ Þ 2 Ç = Ç å
ä ãâ>áà ¿ b ß Ê6¾Î JÌlÄ"È/ʺ Ù JÈ Ä 0ÊÈ/̺:Æ Ë ¾0¾½ 0Í+ È ½gÆ` Þ G Ø e Ý
Ü Ó 0¼0ÊJÈ$ Ä JÇ$ Ä -Ç7 Ä Û` Ô ) ¹ ÒQ Ñ _Úe Ï Ù -ÌÉ Ä Ø\ ¿ Z × b Ó >ÖÕ Ô ) Ó ÒQ Ñ SÐ` Ï Á0ʽ0ÆÈÎ0¾b Ê O¾5Íy È Ìb º "¾Ê Ì:Æ0ËÊ0¾É ½ 6½0¾Èu ¾ Ç"º½Æ-Å+ Ä Ã Â OÁ-ÀG ¿ "¾½ ¼» º ¹
'è¿
S1-QP
S2-QF
Leakage from S1 to S2 Run 117
Run 117 900
1400
800
1200 1000
Entries Mean RMS
800
htemp
700
Entries Mean RMS c 2 / ndf Constant Mean Sigma
600
9191 86.03 27.23
500 400
600
htemp
12043 486.2 88.85 10.55 / 10 909.2 – 13.8 540.5 – 0.4 18.49 – 0.28
300
400
200
200 0
100
100
200
300
400
500
0
600
100
200
300
400
500
600
Run 118
Run 118 400 400
350
htemp
350
Entries Mean RMS c 2 / ndf Constant Mean Sigma
300 250 200 150
11462 299 120.6 29.62 / 15 410.2 – 7.7 417.4 – 0.7 33.6 – 0.6
250 200
htemp
11459 256.1 77.33 190.2 / 41 388.6 – 4.7 244.9 – 0.8 52.79 – 0.53
150 100
100
50
50 0
Entries Mean RMS c 2 / ndf Constant Mean Sigma
300
0
100
200
300
400
500
0
600
100
200
300
Run 119
400
500
600
Run 119
1400
800
1200
Entries Mean RMS c 2 / ndf Constant Mean Sigma
1000 800 600
htemp
htemp
700
11735 467.6 55.98 22.6 / 17 1427 – 16.7 474.9 – 0.2 22.23 – 0.16
Entries Mean RMS 2 c / ndf Constant Mean Sigma
600 500 400
11735 116.2 32.08 43.35 / 17 843.6 – 10.6 110.9 – 0.4 24.44 – 0.30
300 400
200
200 00
100 100
200
300
400
500
600
acd13
0
100
200
300
400
500
adc15
#6íî í:÷" ! í5÷4ù0î î 0ún ù ø"÷gí¶ ö u ø u ø ð Iô5ú+ ù -í ôö î5ô"ù ê
iù-êS÷ ÷ ù -íg÷
ö $ ÿ "ì Jù2 ô -ø2 ô -øb ô ) é ¤þý> $ û 5÷à ù \ ï X ÿ ) ÿ þiýSü û î 5úà ù ø"÷gí7 ö îJëJôJõôóîÉ ò ñ'ð7 ï "îí ìë ê é
ïï
S1-QP
Leakage from S1 to S2
S2-QF
Run 120
Run 120
1600 250
1400 1200
Entries Mean RMS c 2 / ndf Constant Mean Sigma
1000 800
htemp
htemp
200
11874 480.1 54.71 22.56 / 14 1532 – 18.0 486.3 – 0.2 21.19 – 0.17
Entries Mean RMS c 2 / ndf Constant Mean Sigma
150
600
11921 71.98 19.1 71.64 / 67 248.1 – 3.1 70.65 – 0.23 19.4 – 0.2
100
400 50
200 0 0
100
200
300
400
500
600
0
40
60
80
Run 121
100
120
140
160
180
200
220
Run 121 600
1400 1200
500
htemp Entries Mean RMS c 2 / ndf Constant Mean Sigma
1000 800
11598 475.2 57.07 21.3 / 17 1410 – 16.4 482 – 0.2 22.34 – 0.16
Entries Mean RMS c 2 / ndf Constant Mean Sigma
400 300
htemp
11598 58.54 15.77 36.71 / 47 291.7 – 3.6 54.32 – 0.41 17.83 – 0.35
600
200
400
100
200 0 0
100
200
300
400
500
600
adc13
0
40
60
80
100
120
140
160
180
200
adc15
20
S1-QP
20
-20 -30 -40 0.03
0.04
0.05
0.06
20 10 0
0.2
0.4
0.6
0.8
1
-40
-30
S2/(S1+S2)
-20
-10 d (mm)
0
S1(QP) - S2(QF) cross talk
S1/(S1+S2)
0.07
0.08
0.09
0
100
200
300
400
-40
-30
S2-QF
-20
-10 d (mm)
-10 d (mm)
0
0
10
10
S1-QP S2-QF 500
Response [ADC ch.]
600
s /Response Signal ratio
$ %&'(*)"++-,/. 013254(6%87609:0;=< >?)@4A0(6%13)B<6)((6)7*2C0976)D49EF< >)"(*)760A'?<6%09GIHKJ(6)B762L0976)NM%89:< >) 7*)@O< 0(*7,PCQRGTSVUW=XYUZ +MG[(6'97F\\N]_^`\a+\aMD49?EbP cGdS $eWgfh41i41j4<676'kUlmM:GI(*'97F\\ona^`\\apW \o++M;[0(q2L0%89r<674<"E%8sC)(*)9t<E%7u<`49?@)7vF;[(601w< >) 76)B@B<60(DxL0(*E)(By +n
B±* ~BBB °BV ¯ ® ¬ 6i *C-«-« ª © j ¨ *} j j h §T{[rB*~¦ { D z ¥u~5Y } T¤£ ?¢D ¡ ~6B*D ? = ID 6r8{L 6~t 8D { BB5` Y 8 { B66**~-Oq ? }{3 Y 5|*{ j ?6{?}*{ ~uY {
- *~}|{z
²
Run 40, point A 350 300
Area Scan, J1-Quartz Fibres, foil
250 200
Hamamatsu PMT, 80 GeV
htemp
Entries Mean RMS c 2 / ndf Constant Mean Sigma
7730 533.9 20.55 65.75 / 47 314.4 – 4.6 534.5 – 0.2 19.26 – 0.19
150 100 50 0
400
450
500
Run 39, point B
1200
550
600
Run 38, point C 1400
1000 Entries Mean RMS c 2 / ndf Constant Mean Sigma
800 600
1200
htemp
27737 538.6 20.61 51.04 / 43 1107 – 8.6 539.6 – 0.1 19.83 – 0.11
Entries Mean RMS 2 c / ndf Constant Mean Sigma
1000 800
htemp
36667 544.8 20.12 71.96 / 53 1487 – 9.8 545.5 – 0.1 19.59 – 0.08
600
400
400 200 0
200 400
450
500
550
600
0
400
450
500
600
Run 42, point E
Run 41, point D 1800
400
1600
htemp Entries Mean RMS c 2 / ndf Constant Mean Sigma
1400 1200 1000 800
350
31089 553.9 20.66 35.13 / 37 1835 – 13.1 554.1 – 0.1 20.22 – 0.09
Entries Mean RMS c 2 / ndf Constant Mean Sigma
300 250 200
htemp
9610 596 31.05 46.43 / 30 393.8 – 5.6 593.1 – 0.4 27.55 – 0.40
150
600 400
100
200
50
0
550
400
450
500
550
600
0
400
450
500
550
600
650
700
adc14
Bã½Á*À ·B¾B̸BÄâ ¸ BḠà ß Þ 6Àb ¾ BÇ6¸½LÀ-ÆOɸOÈ Ò Ý Ü
Û *¶ ½¾j à Åj à Åh à / Ú È6½½ÙÃĵȽ*¸·¿´Ø ³ ×u¾·5ÃY ¶ TÖÕ Î Ôj Ó · ÀB¾BÌ6¸Ï ½ ?¸ Íq ¾ ÂÀ e Ò Ñ Ð [ÊÏ Î 6½r¾8Á´LÀÆ Ä Ã6·t¾Á¸ Ì 8ÁD ´ BȽBĸÁÁ5Ã`Í Ì Ë Y ¼ Ê 8Á ´ BÇ6¸6½B½6¸·-Æ«Éq ¸ Ƚ?¸Ç ¶¾´Ä3 Æ ÅY à Ä5ÃÁµ*´ ½ Âj À ?½ÁÀ6´?¾¶¿*´ ·u¾½Y ´
¼ ?»º ¹ *¸·¶µ´³
ä¹
Area Scan, J2-Quartz Fibres, glass, Hamamatsu PMT, 80 GeV Run 9, point A
Run 10, point B
700
700
600 Entries Mean RMS c 2 / ndf Constant Mean Sigma
500 400
600
htemp
16909 637.7 19.3 63.7 / 53 714 – 6.9 638.5 – 0.1 18.8 – 0.1
500 400
300
300
200
200
100
100
0
500
Entries Mean RMS c 2 / ndf Constant Mean Sigma
550
600
650
700
0 500
htemp
15884 646.8 18.8 57.53 / 52 688.1 – 6.8 647.4 – 0.1 18.32 – 0.11
550
600
Run 11, point C
700
Run 12, point D
700
700
600
600
500
Entries Mean RMS c 2 / ndf Constant Mean Sigma
400 300
htemp
15277 658 18.57 44.26 / 53 665.7 – 6.7 658.7 – 0.1 18.24 – 0.11
400 300 200
100
100 500
550
Entries Mean RMS c 2 / ndf Constant Mean Sigma
500
200
0
650
600
650
700
0
500
550
htemp
16365 676.5 19.24 75.81 / 58 701.7 – 6.7 677.2 – 0.1 18.49 – 0.10
600
650
700
750
adc13
()ñõ*ô éBò(êBùê ('Vê& % $#" ! 6ôò üB6êñLô-ûOþ"êOý 6è6ñòj ø úi ø úh ø Bý6ññøùYçý êòøù *òé5øè é ôOò*êÕ ñ ?ê ò ÷i ô ÿ
ñtòõæCô-ûù ø6éròBõê õtæý8ñùê?õõ5ø Yï ÿ õ3 æ ü6ê*ññ*êé-ûOþaêýê?ü è8ò8æù3 û ú?øù5øõç*æ ñ÷öôñõ8ô æ?òè8ó6æ6é*òñY æ ðï-îíì ë *êéèçæå
+*ë
Run 27, point A 200 180 160
Area Scan, S1-Quartz Plate, glass
140 120 100
Hamamatsu PMT, 80 GeV
htemp
Entries Mean RMS 2 c / ndf Constant Mean Sigma
3694 1052 18.25 28.76 / 43 181.8 – 3.8 1053 – 0.3 15.9 – 0.2
80 60 40 20 0
Run 26, point B
900
1000
300
Entries Mean RMS 2 c / ndf Constant Mean Sigma
250 200
htemp
140 7428 1038 16.33 58.94 / 52 381.5 – 5.6 1039 – 0.2 15.37 – 0.14
100 80 60
100
40
50
20 920
940
960
980
1000
1020
1040
1060
1080
0
1100
htemp
Entries Mean RMS 2 c / ndf Constant Mean Sigma
120
150
3599 969.1 18.45 62.48 / 51 164.3 – 3.4 969.7 – 0.3 17.08 – 0.21
850
900
200
180
180
140 Entries Mean RMS 2 c / ndf Constant Mean Sigma
htemp
140 3818 859.4 18.7 42.86 / 52 174.2 – 3.6 859.1 – 0.3 17.13 – 0.22
100 80 60
40
40
20
20 750
800
Entries Mean RMS 2 c / ndf Constant Mean Sigma
120
60
0
1000
1050
160
160
80
950
Run 30, point E
Run 29, point D 200
100
1100
160
350
120
1050
Run 25, point C
180
400
0
950
850
900
950
0
700
750
htemp
3836 856.1 19.1 63.5 / 53 167.5 – 3.4 857 – 0.3 17.89 – 0.22
800
850
900
adc14
wv=$BA2? T](04Hu 4 (t4 s A ? p L ( 4 = $ A j J : N O 4 M o n e 1 = ? i F m I + F K I + F l k M ( = = + F 0 H $ / j M + 4 ? i F h H g e f d ? 5 2 + F 3 1 b a 2 + A ? ( T ( 4 = 4 3 V ? X C D A r +q^ ` cZ $`_^D]\[Z =Y?0B+-AXJ(234L+2AQ @ >BW-M0=(H343B+B3FVU T S R;Q P 0BK - L54==5432:JOND4+M343L1>?>-3HK J DI3F+HGF+B0/-E=DC.A3=+B0A-:?310@5-25?>=-<;:9+8765432$10/.-,
$x6
Run 33, point 4 160 140
Area Scan at the sector border, S1-QP
Entries Mean RMS c 2 / ndf Constant Mean Sigma
120 100 80
glass, Hamamatsu, 80 GeV
htemp
3882 1023 29.1 49.67 / 40 152.1 – 3.4 1031 – 0.4 18.21 – 0.32
60 40 20 0
850
900
950
Run 34, point 5
1000
1050
1100
Run 35, point 6 200
140
180
120 Entries Mean RMS c 2 / ndf Constant Mean Sigma
100 80 60
160
htemp
3905 981.3 26.16 60.22 / 46 145.3 – 3.0 985.2 – 0.4 20.28 – 0.29
Entries Mean RMS 2 c / ndf Constant Mean Sigma
140 120 100 80
htemp
3484 944.3 31.27 36.38 / 20 198.8 – 4.7 952.7 – 0.6 18.2 – 0.4
60
40
40
20
20
0 800
850
900
950
1000
1050
0
700
750
800
900
950
1000
Run 37, point 8
Run 36, point 7 180
140 Entries Mean RMS c 2 / ndf Constant Mean Sigma
120 100 80
160
htemp
3853 849.3 109.4 43.92 / 21 145.2 – 3.9 929 – 0.9 23.12 – 0.59
140
Entries Mean RMS c 2 / ndf Constant Mean Sigma
120 100 80
60
htemp
3384 875.3 83.18 17.3 / 19 184.2 – 4.9 918.5 – 0.6 20.66 – 0.49
60
40
40
20
20
0
850
600
650
700
750
800
850
900
950
1000
0
600
650
700
750
800
850
900
950
1000
adc14
140 120 60
400
600
800
1000
1200
40
J1-QF, foil
J2-QF, glass
80 R (mm)
100
border center
S1-QP, glass
Signals vs. distance from the calorimeter center, 80 GeV
1400
Response [ADC ch.]
.y z0{$|3}5~$:7+
KGD}z05$+gD0$}5z0
~(~(}7}~(j$3~f3}3|3(~pY $s~(u~>~O}+3Rz> 5~($~(}+ j$z>W\ _ ¡+7¢£¥¤y¦j{$h+5 §¦.¢v¨©¥¤yª¥\$z0h «+3¬¨©¥¤®<{+h+5 7~O$}5¦¯+>¯$3v~(~° ±l+
K+
mi|®² ³´Yµ~(~(33~v~7+G+0+}z0
~(~}¯}~(j$35~7$f¶v~«3z0·+v~ \}5$
¸¶3~+>$}z>
K~§ ~}7(~Y}5~z>7¶3º¹¡»´ +
120 0
0.01
0.02
0.03
0.04
0.05
40
border center
60
80 R (mm)
100
J2-QF, glass
J1-QF, foil S1-QP, glass
Resolution vs. distance from the calorimeter center, 80 GeV
0.07
0.06
s /Response
¼.½0¾$¿3À5Á¡Â+ÃvÄXÅÆ$ÇÈGÉ+À½>ÊÆ$ËÆDÌÎÍÉ+Ï0Æ$À5½0ÇÁ(ÐÁÀXÀ5ÁÊÆ+Ï0¿vн0Æ$ËQÐÆÃ+ÑfÒÁ(ÓÔÁ(Ï0ÁÍOÐÀ5Æ$Ë3ÊÕ½0ËÖÊÁO×$Á(ÀÉ+ÏEÈjÆ$½0ËYÐÊlØ\Ù Ú ÛÜ<Æ+Ì.ÝÞQØß¼ à$¾$ÏhÉDÊÊܧàGÝ3áâإ߼ªÚ¥Ì\Æ$½0ÏhܪÉDË3ãäáâØ¥ßå<Ú¾+ÏhÉ+Ê5ÊÜ<ÊÁ(Í(ÐÆ$ÀÊ(àvÉ+Ï>Ï3ÍÆ+Ë3Ë3ÁÍOÐÁ(ãKÐÆâælÉ+ÇmÉDÇmÉDÐÊ¿ åç èéÕêÁ(ÈÁ(Ë3ã3Á(Ë3ÍÁëÆ+Ì ÍÉDÏ0Æ$À5½0ÇÁ(ÐÁ(ÀfÀ5ÁÊÆ+Ï0¿vн0Æ$ËÆ+Ë&ãv½0Ê5ÐÉ+Ë3Í(ÁsÌ\ÀÆ$ÇìÐí3Á©ÍÉ+Ï0Æ$À5½0ÇÁ(ÐÁÀâÍÁËYÐÀÁ½0Ê Ê5í3ƺî¡Ë»é Â+ï
\
ü
%
*
+
+
& $
6 $,
6 =( )
*
6 *)% '
6 %.
6 )%( ' %*
6 *% '
I4
9
H9
H9
ù />
G
#
!#
%
+.
& =
,
%,
& )% '
& $
+
&'*D. &')+
(
(
& ( $
+
$
$,
+
& +
+
%
-
.(
6 %
%,
%
6 )%+ '
$
6 *% '
6 %). '
A@
& )% '
B
?
4
ö
/5
/
10 312
6')% 6'%*
N
#
%
"!#
-
(
$
& % (
(
6 ,( 6')% $
6'+, 6')D
& +*
% (
=(
6 )% '
6 %
% 6 )%( ' % % +
6 $% '
C
u t v s r J q p o n m
& $
$
%
& $)% '
%
$ F & % '
CE
~ e x g N ] e g P [ } | [ i c Q c ] { Q yz\ W U [ ygx O Z K w
¢ ¡ U X N e
¥ ¤ £ ¦
B
? A@
(
*
, & *
%
& $* &'=)%*
& )%( ' %
& %*
%,
%
& )% '
+,
%
& *% '
ù /> :
%
1
.
(
(
+
* & *
& ( += &')% %=
&
*
)
+* & =
+
* & =
%
& )% '
& *%
$ & )%' % %=
& $% '
/ <;0
ü ;
:
78 9
ù
%
(
+
(
& -
*(
6 %) '
%
6')% 6'%*
+.
6 %
%
%
6 )% '
$
6 *% '
4
ö
/5
10 312
/
Y Rgi U W a ] RhU O e g c f e Q [
+,
, (
(
$ -
(
& *(
& )%( ' $.
& -
&
$*
+ & )%
&
%*
& )% '
& %
% & )%( ' % %*
%
& $% '
#
"!#
` N a Y K
ý
ÿý
þý
üû
^ R]\ _ W N [ Z K P Q RYX W V
òó
öú
÷ðù
øñ
ô÷
ø
ö÷ó
ôõ
ðñ
g _ o ] [ g U j f b \ [ e Q c ] { Q N z i K N [ L K
^ e N d c [ P Q b Y Q
T Y a g e l f Q x e [
K f P e ]
Q e P l k ] j g N
S
U
¨ § U
T S U
' N Q | _ ^ ] RQP O N M L K J
©«ª¬Uªv®¯ªv°²±ªv³
´8µc¶¸·¸¹Xº¯¹»¢¹¼·¾½P¿UÀcÁyÂyþÄÅUÆÇiÈaÀÊÉo·q»rËtÌvÍοUÆ\ÅUÏPмÑÒNÆ\ÓÔÉÖÕ×»²ØÔÅUÆ\ÙÃ\ÈPÅUÐÚÅU½ÚÛÅUÆ\ÜoÝNÆeÓßÞ¯ÈàÃeÂRábÃbÑ ÉãâäÍtå¸Ñ'æNçèÒUé{ÕêÝZà£æNéNéær¹ ´"涸·¸¹ä롹äÞìÝN½PÝN¿UÂyÅxÇiÅUÏíÄÅUÆ¡ÇeÈPÀ×Éo·q»rËtÌvÍîÇiÀbÝNïðÑoÉÖÕ×»PñòËtÌvËâóÕ
ï{ÀbÀ¦ÇiÂy½a¿ÚÅN½ôëqÂöõÆeÝNácÇeÂyÅU½Ñ
ÉãâäÍtå¸Ñø÷{ëqÀbácÀbï¡ù'ÀbƾæNéUéUær¹ ´Òò¶¤úû¹âä¿N¿UÀbÆüÇZÑXÕ£ÀbÀcÇeÂy½P¿ýÅN½²Þ¯ÈàÃ\ÂyábÃþÝxÇqºÿqÉѼޯÆeÝN¿UÏPÀû÷è µærÑ
æNéUéUÒ r¹
ÏPÁRàêæNéNéUÒ ¼åtÏPábÁ¹¼Þ¯ÈàÃb¹
ÁÝNÓràræè_ëbÂÝxÓPÏÃÊ ÄÅUÆ ÇeÈPÀÔÉo·v»rËtÌvÍ¿UÆ\ÅUÏPмÑå¾ÏPácÁyÀbÝNÆýËÖÈPÀbÅNÆ\à<æµÔùहå¾ÂyÙxÅUÁÝxÀ 'Ñ ÿtÀbÆ\ÅU½ýÞ¯ÆeÀcÃeÃbÑP»rÅ"ø ! ÝrÑPæNéNéærÑм¹öµ$#Uæèiµ$ #%·¤¹"º¯¹<»'¹r·¾½P¿UÀbÁRÂyÃäÀcÇoÝNÁ¹RÑ ¹Þ¯ÈàÃc¹&' () æxéUéæ ãµ çUÒ r¹
´ x¶¤âÖ¹
*#
´ ¶¸·¸¹¼ë¡¹ÞìÝN½Ýx¿UÂyÅNÇeÅUϼÑ'Ç ÝNÁRÙðÝòÇþÉãÞ¯Ë ØÔÀbÀcÙUèÿÛ
+ïÀcÀcÇiÂR½P¿PÑå¾Å,UÀcï¡ù¢ÀcÆbÑ
ØÔÀbÀcÙ'ÑÞä;»èÿ
æNéNéUÒ
ÝN½PÓÚÉÖÕê»
ï{ÀbÀcÇeÂy½P¿aÑP·ÏP¿NÏPÃ\ÇbÑ'æNéUéUÒaÑÉãâóÍt帹
-ÁÝxÓaàÃ.¦è_ëbÂyÝNÓPÏÃc ÑÞ¯ÈàÃb¹tÞìÝNÆüÇZ¹ÖåtÏPábÁ¹-/102æNéUéUÒ3 Êæ"43#è_Ò"%vÛLÂ5bÂRÙòÝ 76 ÝNÓPÆiÝ8/109 æNéUéUÒ3 N# ÷3# è_÷3"a4 ¹
´÷ò¶¤âÖ¹
â¯ÁyÀbï{Àb½ÇiÝNÆe½àÙÈ
ÉoÈPÝNÃ\ÇeÂyÃÂX·ãÇiÅUï{½PÅU¿NÅ
*
´ ¶¡»'¹"·¸¹
aµBxèCæDP¹
E4
,
»aÝNÓPÅ ÃeÙàÚÀcǸÝNÁ¹RÑ
;:=<>æNéUé"3 qÒUçU÷òè?é3#%@6
Þ¯ÈàrÃc¹·ãÇiÅUå¾ÏPácÁ ¹
5
A:=<>
ÝNÓ¼¹¼Ûì cÂyÙòÝ
"
æNéNé
FÁÝNÓaàæèëcÂÝNÓaÏÃb ÑãÉÖÕ×»èÿtÀZÝBàG+_ÅN½ ÕðÀcÀcÇiÂR½P¿H+_½ÇeÀbÆ\½ÝxÇiÂRÅU½ÝNÁÖØÔÅUÆeÙÃ\ÈPÅUÐ ÅU½ôÞ¯ÈàrÃ\Âyácà Ýx½PÓûËLÀcá ÈP½PÂJ I ÏaÀbà ÄÅUÆ ÇiÈPÀÖºÿÉ Ýx½PÓ Í¾ÿü+ ÉíâLKrÐ'ÀbÆ\Âyï{Àb½ÇiÃcÑ M N.M"OQP.R"STN.MUSCVXWZYW\[ ] N_^`O5a¦ÑUëqÀbÁRÐPÈPÂÑ ÆeÀcÀbácÀNÑ ÏP½PÀ¸æNéUéNÒa¹ v
´ ò¶¤âÖ¹
b
1
´çò¶¡ÕÚ¹øºÂ xÝN½¼Ñ ¤¹ äÀbÆeácÀbÃ\ÂLÝx½PÓ£Íþ¹PØ
3#
Zû¹P·¾½ÂR½1bÂR½PÅÀ¦ÇtÝNÁ
¹öÑøÕðÀ¦Çiȼ¹øÞ¯ÈàÃb¹¢ÍtÀcÃb¹
Zû¹P·¾½ÂR½1bÂR½PÅÀ¦ÇtÝNÁ
¹öÑøÕðÀ¦Çiȼ¹øÞ¯ÈàÃb¹¢ÍtÀcÃb¹
´ µ éx¶
´ µUµb¶
3#
ÂR¿UïÊÝx½PÃbÑPÉãâóÍtåç è_éærѼµ çNç r¹
cA/ d=<@üµ
3 3#
çUçNç \Ò xéòèÒU÷Uær¹
cA/ d=<@üµ çUç # \ÒU÷Nça¹
Òaµ