You need JavaScript to view this

On the determination of track parameters with the forward drift chambers of the ZEUS detector. Zur Bestimmung von Spurparametern mit den Vorwaertsdriftkammern des ZEUS-Detektors

Abstract

The ep-collider HERA at DESY in Hamburg will probe unexplored kinematical regions of the deep-inelastic electron-proton-scattering. The ZEUS-Collaboration develops a detector to study the physical interactions of the incoming particles. Among the requirements of the ZEUS-detector a good momentum resolution of the particle tracks in the inner detector resp. forward tracking detector (FTD) is necessary. The behaviour of the tracks in the forward tracking detector is determined by the lorentzboost ({beta}=0.93) in forward direction and by the inhomogeneous magnetic field in the FTD, which is mainly parallel to the beampipe-axis. In this thesis all studies regard only the FTD (not including VXD or CTD) for the momentum determination. Two scenarios are considered to determine the limits of momentum measurability in the FTD. The results show that the determination of the momentum in the FTD is only possible with the (exact) knowledge of the vertex position, where the tracks come from. The functional dependence of the track parameters at the vertex on the track parameters at the first FTD-module was intensively studied. Disconnected ambiguities are not found. A track model for tracks in the FTD is developed without regarding multiple scattering. The momentum determination of a track is mainly based on  More>>
Authors:
Publication Date:
Jan 01, 1989
Product Type:
Technical Report
Report Number:
BONN-IR-89-01
Reference Number:
DEN-89-012402; EDB-89-154462
Resource Relation:
Other Information: Diploma Thesis
Subject:
46 INSTRUMENTATION RELATED TO NUCLEAR SCIENCE AND TECHNOLOGY; DATA PROCESSING; PARTICLE TRACKS; DRIFT CHAMBERS; HERA STORAGE RING; DEEP INELASTIC SCATTERING; ELECTRON-PROTON INTERACTIONS; ENERGY RESOLUTION; GEV RANGE 100-1000; INHOMOGENEOUS FIELDS; LIMITING VALUES; MAGNETIC FIELDS; MATHEMATICAL MODELS; MULTIPLE SCATTERING; PARTICLE KINEMATICS; SPATIAL RESOLUTION; ELECTRON-NUCLEON INTERACTIONS; ENERGY RANGE; GEV RANGE; INELASTIC SCATTERING; INTERACTIONS; LEPTON-BARYON INTERACTIONS; LEPTON-HADRON INTERACTIONS; LEPTON-NUCLEON INTERACTIONS; MEASURING INSTRUMENTS; MULTIWIRE PROPORTIONAL CHAMBERS; PARTICLE INTERACTIONS; PROCESSING; PROPORTIONAL COUNTERS; RADIATION DETECTORS; RESOLUTION; SCATTERING; STORAGE RINGS; 440104* - Radiation Instrumentation- High Energy Physics Instrumentation
OSTI ID:
5675680
Research Organizations:
Bonn Univ. (Germany, F.R.). Physikalisches Inst.
Country of Origin:
Germany
Language:
German
Availability:
Bonn Univ. (Germany, F.R.). Physikalisches Inst.
Submitting Site:
DEN
Size:
Pages: (123 p)
Announcement Date:
May 13, 2001

Citation Formats

Guenzel, T F. On the determination of track parameters with the forward drift chambers of the ZEUS detector. Zur Bestimmung von Spurparametern mit den Vorwaertsdriftkammern des ZEUS-Detektors. Germany: N. p., 1989. Web.
Guenzel, T F. On the determination of track parameters with the forward drift chambers of the ZEUS detector. Zur Bestimmung von Spurparametern mit den Vorwaertsdriftkammern des ZEUS-Detektors. Germany.
Guenzel, T F. 1989. "On the determination of track parameters with the forward drift chambers of the ZEUS detector. Zur Bestimmung von Spurparametern mit den Vorwaertsdriftkammern des ZEUS-Detektors." Germany.
@misc{etde_5675680,
title = {On the determination of track parameters with the forward drift chambers of the ZEUS detector. Zur Bestimmung von Spurparametern mit den Vorwaertsdriftkammern des ZEUS-Detektors}
author = {Guenzel, T F}
abstractNote = {The ep-collider HERA at DESY in Hamburg will probe unexplored kinematical regions of the deep-inelastic electron-proton-scattering. The ZEUS-Collaboration develops a detector to study the physical interactions of the incoming particles. Among the requirements of the ZEUS-detector a good momentum resolution of the particle tracks in the inner detector resp. forward tracking detector (FTD) is necessary. The behaviour of the tracks in the forward tracking detector is determined by the lorentzboost ({beta}=0.93) in forward direction and by the inhomogeneous magnetic field in the FTD, which is mainly parallel to the beampipe-axis. In this thesis all studies regard only the FTD (not including VXD or CTD) for the momentum determination. Two scenarios are considered to determine the limits of momentum measurability in the FTD. The results show that the determination of the momentum in the FTD is only possible with the (exact) knowledge of the vertex position, where the tracks come from. The functional dependence of the track parameters at the vertex on the track parameters at the first FTD-module was intensively studied. Disconnected ambiguities are not found. A track model for tracks in the FTD is developed without regarding multiple scattering. The momentum determination of a track is mainly based on the track part between the first FTD-module and the vertex. A momentum resolution of {sigma}p/P=0.008 P-0.0025 P can be achieved depending on the polar angle (relative to the beampipe-axis) of the track at the vertex. Finally the influence of the multiple scattering between the first FTD-module and the vertex on the momentum resolution is estimated. The increase of the dead material for small polar angles restricts the area of acceptable momentum resolution to polar angles of {lambda}>180 mrad. (orig.).}
place = {Germany}
year = {1989}
month = {Jan}
}