Difference between revisions of "Mattione Update 10312011"

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(BCAL Proton 334 Segmentation σt Fits with BCAL Time Smear Disabled)
(BCAL π- BCAL σt 334 vs 1234 Segmentation)
 
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=== 1234 Segmentation BCAL Time-Smear Details ===
 
=== 1234 Segmentation BCAL Time-Smear Details ===
 
* The 1234 segmentation is not available in the HDGEANT simulation, so its BCAL shower time was smeared manually during reconstruction
 
* The 1234 segmentation is not available in the HDGEANT simulation, so its BCAL shower time was smeared manually during reconstruction
* The BCAL hit-time smear was disabled in mc_smear
+
** The BCAL hit-time smear was disabled in mc_smear
* The shower time was smeared by: &sigma;<sub>smear</sub> = sqrt(&sigma;<sup>2</sup><sub>t_334</sub> - &sigma;<sup>2</sup><sub>t_334_NoSmear</sub>) * &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub>
+
* The shower time was smeared by: &sigma;<sub>smear</sub> = sqrt(&sigma;<sup>2</sup><sub>t_1234_Target</sub> - &sigma;<sup>2</sup><sub>t_334_NoSmear</sub>), where &sigma;<sub>t_1234_Target</sub> = &sigma;<sub>t_334</sub>*Improvement_Ratio, Improvement_Ratio = &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub>
 
** These time uncertainties were studied as a function of dE and &theta;
 
** These time uncertainties were studied as a function of dE and &theta;
** The &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> ratio was obtained from fitting the results of David Lawrence's studies of photons
+
** The &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> improvement ratio was obtained from fitting the results of David Lawrence's studies of photons
** The &sigma;<sup>2</sup><sub>t_334</sub> and &sigma;<sup>2</sup><sub>t_334_NoSmear</sub> variances were determined separately for protons and pions
+
** The &sigma;<sup>2</sup><sub>t_334</sub> and &sigma;<sup>2</sup><sub>t_334_NoSmear</sub> variances were determined separately for protons and pions, by comparing the reconstructed shower times to their true values.
  
 
=== Improvements from last week's study ===
 
=== Improvements from last week's study ===
 
* Looking at &pi;(1600) -> b1&pi; events with t-slope = 2.0 instead of &pi;(2000) -> b1&pi; events with t-slope = 5.0: Higher proton momentum in BCAL for studying separation
 
* Looking at &pi;(1600) -> b1&pi; events with t-slope = 2.0 instead of &pi;(2000) -> b1&pi; events with t-slope = 5.0: Higher proton momentum in BCAL for studying separation
* The &sigma;<sub>t_334_NoSmear</sub> resolution is no longer assumed to be zero: it is non-negligible in the region of the FDC support structure at for large energy deposits (determined separately for protons and pions)
+
* The &sigma;<sub>t_334_NoSmear</sub> resolution is no longer assumed to be zero: it is non-negligible for large energy deposits (presumably due to clustering?)
 
* The &sigma;<sub>t_334</sub> resolution is determined separately for protons and pions (was using the pion resolution for both previously)
 
* The &sigma;<sub>t_334</sub> resolution is determined separately for protons and pions (was using the pion resolution for both previously)
 
* Better fit to photon &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> distributions due to extra data point at 50 degrees
 
* Better fit to photon &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> distributions due to extra data point at 50 degrees
 
* Low-&theta;, low-dE time resolutions better-simulated: instead of extrapolating fit, performing linear-interpolation between data-points.
 
* Low-&theta;, low-dE time resolutions better-simulated: instead of extrapolating fit, performing linear-interpolation between data-points.
 +
* 2 (presumably canceling) bug fixes, final results on hold until confirmation (tomorrow possibly?).
  
=== Issues ===
+
=== NOTES ===
 
* The photon &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> is assumed to be applicable to protons and pions
 
* The photon &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> is assumed to be applicable to protons and pions
  
Line 24: Line 25:
  
 
* &gamma; BCAL &sigma;<sub>t</sub> vs. dE (GeV):
 
* &gamma; BCAL &sigma;<sub>t</sub> vs. dE (GeV):
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta12Degrees.gif|thumb|left|400px]]
+
{| class="wikitable"
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta16Degrees.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta12Degrees.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta20Degrees.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta16Degrees.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta50Degrees.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta20Degrees.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta90Degrees.gif|thumb|left|400px]]
+
|-
 +
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta50Degrees.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolution_Theta90Degrees.gif|thumb|left|300px]]
 +
|}
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
  
Line 34: Line 38:
  
 
* &gamma; BCAL &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> vs. dE (GeV):
 
* &gamma; BCAL &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> vs. dE (GeV):
 +
** NOTE: When applying this "Improvement Ratio," the maximum allowed value was set to 1 (shouldn't be worse for 1234 at large angles, right?)
 
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio.gif|thumb|left|400px]]
 
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio.gif|thumb|left|400px]]
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
Line 39: Line 44:
 
* Fits to &gamma; BCAL &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> vs. &theta; in dE bins:
 
* Fits to &gamma; BCAL &sigma;<sub>t_1234</sub> / &sigma;<sub>t_334</sub> vs. &theta; in dE bins:
 
* Don't trust fits at low-&theta;, so linearly-interpolate between 12 and 16 degrees.
 
* Don't trust fits at low-&theta;, so linearly-interpolate between 12 and 16 degrees.
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio_Fits1.gif|thumb|left|400px]]
+
{| class="wikitable"
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio_Fits2.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio_Fits1.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio_Fits3.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio_Fits2.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALPhotonTimeResolutionRatio_Fits3.gif|thumb|left|300px]]
 +
|}
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
  
== Summary of BCAL &pi;<sup>-</sup> & proton 334 Segmentation &sigma;<sub>t</sub> Fits ==
+
== BCAL &pi;<sup>-</sup> & proton 334 Segmentation &sigma;<sub>t</sub> Fits ==
 
* When the BCAL time-smear is enabled, the &pi;<sup>-</sup> & proton time resolutions are similar.  
 
* When the BCAL time-smear is enabled, the &pi;<sup>-</sup> & proton time resolutions are similar.  
* When the BCAL time-smear is enabled, the &pi;<sup>-</sup> & proton time resolutions are similar, except at high shower energies.
+
* When the BCAL time-smear is disabled, the &pi;<sup>-</sup> & proton time resolutions are similar, except at high shower energies.
  
== BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits ==
+
=== BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits ===
 
* BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits vs. &theta; in dE bins:
 
* BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits vs. &theta; in dE bins:
 
** NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.  
 
** NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.  
 
*** Last week, the fit was extrapolated from high-&theta; over the low-&theta; range.  
 
*** Last week, the fit was extrapolated from high-&theta; over the low-&theta; range.  
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits1.gif|thumb|left|400px]]
+
{| class="wikitable"
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits2.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits1.gif|thumb|left|300px| &sigma;<sub>t</sub> Linearly Interpolated]]
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits3.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits2.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits4.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits3.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits5.gif|thumb|left|400px]]
+
|-
 +
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits4.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaT_Fits5.gif|thumb|left|300px]]
 +
|}
 +
 
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
  
== BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits with BCAL Time Smear Disabled ==
+
=== BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits with BCAL Time Smear Disabled ===
 
* BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits with BCAL Time Smear Disabled vs. &theta; in dE bins:
 
* BCAL &pi;<sup>-</sup> 334 Segmentation &sigma;<sub>t</sub> Fits with BCAL Time Smear Disabled vs. &theta; in dE bins:
 
** NOTE: These resolutions are negligible except at high dE.
 
** NOTE: These resolutions are negligible except at high dE.
Line 65: Line 76:
 
** NOTE: For the first two dE bins, the time smear was set to zero.  
 
** NOTE: For the first two dE bins, the time smear was set to zero.  
 
** NOTE: For the third and forth dE bins, the values were linearly interpolated between the points instead of fit to a function.  
 
** NOTE: For the third and forth dE bins, the values were linearly interpolated between the points instead of fit to a function.  
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits1.gif|thumb|left|400px]]
+
{| class="wikitable"
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits2.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits1.gif|thumb|left|300px| Evaluated as &sigma;<sub>t</sub> = 0]]
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits3.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits2.gif|thumb|left|300px| Evaluated as &sigma;<sub>t</sub> = 0]]
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits4.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits3.gif|thumb|left|300px| &sigma;<sub>t</sub> Linearly Interpolated]]
[[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits5.gif|thumb|left|400px]]
+
|-
 +
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits4.gif|thumb|left|300px| &sigma;<sub>t</sub> Linearly Interpolated]]
 +
| [[Image:Mattione_Update_10312011_BCALPiMinusSigmaTNoTSmear_Fits5.gif|thumb|left|300px]]
 +
|}
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
  
== BCAL Proton 334 Segmentation &sigma;<sub>t</sub> Fits ==
+
=== BCAL Proton 334 Segmentation &sigma;<sub>t</sub> Fits ===
 
* BCAL proton 334 Segmentation &sigma;<sub>t</sub> Fits vs. &theta; in dE bins:
 
* BCAL proton 334 Segmentation &sigma;<sub>t</sub> Fits vs. &theta; in dE bins:
 
** NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.  
 
** NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.  
 
*** Last week, the &pi;- fit was used, and was extrapolated from high-&theta; over the low-&theta; range.  
 
*** Last week, the &pi;- fit was used, and was extrapolated from high-&theta; over the low-&theta; range.  
[[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits1.gif|thumb|left|400px]]
+
{| class="wikitable"
[[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits2.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits1.gif|thumb|left|300px| Linearly Interpolated]]
[[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits3.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits2.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits4.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits3.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits5.gif|thumb|left|400px]]
+
|-
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits4.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaT_Fits5.gif|thumb|left|300px]]
 +
|}
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
  
== BCAL Proton 334 Segmentation &sigma;<sub>t</sub> Fits with BCAL Time Smear Disabled ==
+
=== BCAL Proton 334 Segmentation &sigma;<sub>t</sub> Fits with BCAL Time Smear Disabled ===
 
* BCAL proton 334 Segmentation &sigma;<sub>t</sub> Fits vs. &theta; in dE bins:
 
* BCAL proton 334 Segmentation &sigma;<sub>t</sub> Fits vs. &theta; in dE bins:
 
** NOTE: These resolutions are negligible except at high dE.
 
** NOTE: These resolutions are negligible except at high dE.
Line 89: Line 106:
 
** NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.  
 
** NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.  
 
** NOTE: For the second dE bin, for &theta; <= 27.0, the values were linearly interpolated between the points. For &theta; > 27.0, the time resolution was set to zero.
 
** NOTE: For the second dE bin, for &theta; <= 27.0, the values were linearly interpolated between the points. For &theta; > 27.0, the time resolution was set to zero.
[[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits1.gif|thumb|left|400px]]
+
{| class="wikitable"
[[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits2.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits1.gif|thumb|left|300px| Linearly Interpolated]]
[[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits3.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits2.gif|thumb|left|300px| Linearly Interpolated]]
[[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits4.gif|thumb|left|400px]]
+
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits3.gif|thumb|left|300px]]
[[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits5.gif|thumb|left|400px]]
+
|-
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits4.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTNoTSmear_Fits5.gif|thumb|left|300px]]
 +
|}
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
  
== &pi;(1600) -> b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p ==
+
<!--
 +
=== BCAL Proton BCAL &sigma;<sub>t</sub> 334 vs 1234 Segmentation ===
 +
* BCAL proton &sigma;<sub>t</sub> vs. &theta; in dE bins, 334 vs 1234 Segmentation:
 +
{| class="wikitable"
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTCompare_Bin1.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTCompare_Bin2.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTCompare_Bin3.gif|thumb|left|300px]]
 +
|-
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTCompare_Bin4.gif|thumb|left|300px]]
 +
| [[Image:Mattione_Update_10312011_BCALProtonSigmaTCompare_Bin5.gif|thumb|left|300px]]
 +
|}
 +
<br style="clear:both;"/>
 +
-->
 +
 
 +
== &pi;(2000) vs &pi;(1600) b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p ==
 
&Delta;&beta; = &beta;<sub>p</sub> - &beta;<sub>t</sub> = p/sqrt(p*p + m*m) - path/(c*TOF)
 
&Delta;&beta; = &beta;<sub>p</sub> - &beta;<sub>t</sub> = p/sqrt(p*p + m*m) - path/(c*TOF)
* NOTE: Resolution improvement is worse than last week, presumably due to increased (more realistic) time smearing in 1234 for low-&theta;, low-dE particles.
 
  
* &pi;(1600) -> b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p, 334 Segmentation:
+
* b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p, 334 Segmentation:
[[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP_334Segmentation.gif|thumb|left|600px]]
+
{| class="wikitable"
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP_334Segmentation.gif|thumb|left|600px|&pi;(1600) t-slope = 2]]
 +
| [[Image:Mattione_Update_10242011_BCALPiPlusDeltaBetaVsP_334Segmentation.gif|thumb|left|600px|&pi;(2000) t-slope = 5]]
 +
|}
 
<br style="clear:both;"/>
 
<br style="clear:both;"/>
  
* &pi;(1600) -> b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p, 1234 Segmentation:
 
** NOTE: Not sure what the source of the kink in the distribution is. 
 
[[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP_1234Segmentation.gif|thumb|left|600px]]
 
<br style="clear:both;"/>
 
  
== LAST WEEK'S RESULT: X(2000) -> b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p ==
+
<!--
 +
== &pi;(1600) -> b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p ==
 
&Delta;&beta; = &beta;<sub>p</sub> - &beta;<sub>t</sub> = p/sqrt(p*p + m*m) - path/(c*TOF)
 
&Delta;&beta; = &beta;<sub>p</sub> - &beta;<sub>t</sub> = p/sqrt(p*p + m*m) - path/(c*TOF)
  
* X(2000) -> b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p, 334 Segmentation:
+
{| class="wikitable"
[[Image:Mattione_Update_10242011_BCALPiPlusDeltaBetaVsP_334Segmentation.gif|thumb|left|600px]]
+
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP_334Segmentation.gif|thumb|left|600px|334 Segmentation]]
<br style="clear:both;"/>
+
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP_1234Segmentation.gif|thumb|left|600px|1234 Segmentation]]
 +
|}
  
* X(2000) -> b1pi Events, &pi;<sup>+</sup> BCAL &Delta;&beta; vs p, 1234 Segmentation:
+
* &pi;(1600) -> b1pi Events, &pi;<sup>+</sup> Candidates, BCAL &Delta;&beta; vs p
[[Image:Mattione_Update_10242011_BCALPiPlusDeltaBetaVsP_1234Segmentation.gif|thumb|left|600px]]
+
{| class="wikitable"
<br style="clear:both;"/>
+
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1200MeV_334Segmentation.gif|thumb|left|400px|p = 1.2 GeV/c, 334 Segmentation]]
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1200MeV_1234Segmentation.gif|thumb|left|400px|p = 1.2 GeV/c, 1234 Segmentation]]
 +
|-
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1400MeV_334Segmentation.gif|thumb|left|400px|p = 1.4 GeV/c, 334 Segmentation]]
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1400MeV_1234Segmentation.gif|thumb|left|400px|p = 1.4 GeV/c, 1234 Segmentation]]
 +
|-
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1500MeV_334Segmentation.gif|thumb|left|400px|p = 1.5 GeV/c, 334 Segmentation]]
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1500MeV_1234Segmentation.gif|thumb|left|400px|p = 1.5 GeV/c, 1234 Segmentation]]
 +
|-
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1600MeV_334Segmentation.gif|thumb|left|400px|p = 1.6 GeV/c, 334 Segmentation]]
 +
| [[Image:Mattione_Update_10312011_BCALPiPlusDeltaBetaVsP1600MeV_1234Segmentation.gif|thumb|left|400px|p = 1.6 GeV/c, 1234 Segmentation]]
 +
|}
 +
-->

Latest revision as of 12:59, 7 November 2011

Procedure

  • Reconstruct π(1600) -> b1π events with t-slope = 2.0 (was 5.0 for X(2000)) using both the 334 and 1234 segmentations
  • Plot Δβ vs p for π+ candidates to see proton, π+ separation.

1234 Segmentation BCAL Time-Smear Details

  • The 1234 segmentation is not available in the HDGEANT simulation, so its BCAL shower time was smeared manually during reconstruction
    • The BCAL hit-time smear was disabled in mc_smear
  • The shower time was smeared by: σsmear = sqrt(σ2t_1234_Target - σ2t_334_NoSmear), where σt_1234_Target = σt_334*Improvement_Ratio, Improvement_Ratio = σt_1234 / σt_334
    • These time uncertainties were studied as a function of dE and θ
    • The σt_1234 / σt_334 improvement ratio was obtained from fitting the results of David Lawrence's studies of photons
    • The σ2t_334 and σ2t_334_NoSmear variances were determined separately for protons and pions, by comparing the reconstructed shower times to their true values.

Improvements from last week's study

  • Looking at π(1600) -> b1π events with t-slope = 2.0 instead of π(2000) -> b1π events with t-slope = 5.0: Higher proton momentum in BCAL for studying separation
  • The σt_334_NoSmear resolution is no longer assumed to be zero: it is non-negligible for large energy deposits (presumably due to clustering?)
  • The σt_334 resolution is determined separately for protons and pions (was using the pion resolution for both previously)
  • Better fit to photon σt_1234 / σt_334 distributions due to extra data point at 50 degrees
  • Low-θ, low-dE time resolutions better-simulated: instead of extrapolating fit, performing linear-interpolation between data-points.
  • 2 (presumably canceling) bug fixes, final results on hold until confirmation (tomorrow possibly?).

NOTES

  • The photon σt_1234 / σt_334 is assumed to be applicable to protons and pions

David's BCAL Photon Time Resolution Studies

  • γ BCAL σt vs. dE (GeV):
Mattione Update 10312011 BCALPhotonTimeResolution Theta12Degrees.gif
Mattione Update 10312011 BCALPhotonTimeResolution Theta16Degrees.gif
Mattione Update 10312011 BCALPhotonTimeResolution Theta20Degrees.gif
Mattione Update 10312011 BCALPhotonTimeResolution Theta50Degrees.gif
Mattione Update 10312011 BCALPhotonTimeResolution Theta90Degrees.gif


Time Resolution Segmentation Ratio

  • γ BCAL σt_1234 / σt_334 vs. dE (GeV):
    • NOTE: When applying this "Improvement Ratio," the maximum allowed value was set to 1 (shouldn't be worse for 1234 at large angles, right?)
Mattione Update 10312011 BCALPhotonTimeResolutionRatio.gif


  • Fits to γ BCAL σt_1234 / σt_334 vs. θ in dE bins:
  • Don't trust fits at low-θ, so linearly-interpolate between 12 and 16 degrees.
Mattione Update 10312011 BCALPhotonTimeResolutionRatio Fits1.gif
Mattione Update 10312011 BCALPhotonTimeResolutionRatio Fits2.gif
Mattione Update 10312011 BCALPhotonTimeResolutionRatio Fits3.gif


BCAL π- & proton 334 Segmentation σt Fits

  • When the BCAL time-smear is enabled, the π- & proton time resolutions are similar.
  • When the BCAL time-smear is disabled, the π- & proton time resolutions are similar, except at high shower energies.

BCAL π- 334 Segmentation σt Fits

  • BCAL π- 334 Segmentation σt Fits vs. θ in dE bins:
    • NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.
      • Last week, the fit was extrapolated from high-θ over the low-θ range.
σt Linearly Interpolated
Mattione Update 10312011 BCALPiMinusSigmaT Fits2.gif
Mattione Update 10312011 BCALPiMinusSigmaT Fits3.gif
Mattione Update 10312011 BCALPiMinusSigmaT Fits4.gif
Mattione Update 10312011 BCALPiMinusSigmaT Fits5.gif


BCAL π- 334 Segmentation σt Fits with BCAL Time Smear Disabled

  • BCAL π- 334 Segmentation σt Fits with BCAL Time Smear Disabled vs. θ in dE bins:
    • NOTE: These resolutions are negligible except at high dE.
    • NOTE: The bad fit results were ignored.
    • NOTE: For the first two dE bins, the time smear was set to zero.
    • NOTE: For the third and forth dE bins, the values were linearly interpolated between the points instead of fit to a function.
Evaluated as σt = 0
Evaluated as σt = 0
σt Linearly Interpolated
σt Linearly Interpolated
Mattione Update 10312011 BCALPiMinusSigmaTNoTSmear Fits5.gif


BCAL Proton 334 Segmentation σt Fits

  • BCAL proton 334 Segmentation σt Fits vs. θ in dE bins:
    • NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.
      • Last week, the π- fit was used, and was extrapolated from high-θ over the low-θ range.
Linearly Interpolated
Mattione Update 10312011 BCALProtonSigmaT Fits2.gif
Mattione Update 10312011 BCALProtonSigmaT Fits3.gif
Mattione Update 10312011 BCALProtonSigmaT Fits4.gif
Mattione Update 10312011 BCALProtonSigmaT Fits5.gif


BCAL Proton 334 Segmentation σt Fits with BCAL Time Smear Disabled

  • BCAL proton 334 Segmentation σt Fits vs. θ in dE bins:
    • NOTE: These resolutions are negligible except at high dE.
    • NOTE: The bad fit results were ignored.
    • NOTE: For the first dE bin, the values were linearly interpolated between the points instead of fit to a function.
    • NOTE: For the second dE bin, for θ <= 27.0, the values were linearly interpolated between the points. For θ > 27.0, the time resolution was set to zero.
Linearly Interpolated
Linearly Interpolated
Mattione Update 10312011 BCALProtonSigmaTNoTSmear Fits3.gif
Mattione Update 10312011 BCALProtonSigmaTNoTSmear Fits4.gif
Mattione Update 10312011 BCALProtonSigmaTNoTSmear Fits5.gif



π(2000) vs π(1600) b1pi Events, π+ BCAL Δβ vs p

Δβ = βp - βt = p/sqrt(p*p + m*m) - path/(c*TOF)

  • b1pi Events, π+ BCAL Δβ vs p, 334 Segmentation:
π(1600) t-slope = 2
π(2000) t-slope = 5