Radiation imaging with optically read out GEM-based detectors

被引:12
作者
Brunbauer, F. M. [1 ,2 ]
Lupberger, M. [1 ]
Oliveri, E. [1 ]
Resnati, F. [1 ]
Ropelewski, L. [1 ]
Streli, C. [2 ]
Thuiner, P. [1 ]
van Stenis, M. [1 ]
机构
[1] CERN, 385 Route Meyrin, CH-1217 Geneva, Switzerland
[2] Vienna Univ Technol, Karlspl 13, A-1040 Vienna, Austria
来源
JOURNAL OF INSTRUMENTATION | 2018年 / 13卷
关键词
Gaseous imaging and tracking detectors; Micropattern gaseous detectors (MSGC; GEM; THGEM; RETHGEM; MHSP; MICROPIC; MICROMEGAS; InGrid; etc); Optical detector readout concepts; X-ray detectors;
D O I
10.1088/1748-0221/13/02/T02006
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Modern imaging sensors allow for high granularity optical readout of radiation detectors such as MicroPattern Gaseous Detectors (MPGDs). Taking advantage of the high signal amplification factors achievable by MPGD technologies such as Gaseous Electron Multipliers (GEMs), highly sensitive detectors can be realised and employing gas mixtures with strong scintillation yield in the visible wavelength regime, optical readout of such detectors can provide high-resolution event representations. Applications from X-ray imaging to fluoroscopy and tomography profit from the good spatial resolution of optical readout and the possibility to obtain images without the need for extensive reconstruction. Sensitivity to low-energy X-rays and energy resolution permit energy resolved imaging and material distinction in X-ray fluorescence measurements. Additionally, the low material budget of gaseous detectors and the possibility to couple scintillation light to imaging sensors via fibres or mirrors makes optically read out GEMs an ideal candidate for beam monitoring detectors in high energy physics as well as radiotherapy. We present applications and achievements of optically read out GEM-based detectors including high spatial resolution imaging and X-ray fluorescence measurements as an alternative readout approach for MPGDs. A detector concept for low intensity applications such as X-ray crystallography, which maximises detection efficiency with a thick conversion region but mitigates parallax-induced broadening is presented and beam monitoring capabilities of optical readout are explored. Augmenting high resolution 2D projections of particle tracks obtained with optical readout with timing information from fast photon detectors or transparent anodes for charge readout, 3D reconstruction of particle trajectories can be performed and permits the realisation of optically read out time projection chambers. Combining readily available high performance imaging sensors with compatible scintillating gases and the strong signal amplification factors achieved by MPGDs makes optical readout an attractive alternative to the common concept of electronic readout of radiation detectors. Outstanding signal-to-noise ratios and robustness against electronic noise allow unprecedented imaging capabilities for various applications in fields ranging from high energy physics to medical instrumentation.
引用
收藏
页数:14
相关论文
共 16 条
[1]   Experimental studies of a Micromegas neutron detector [J].
Andriamonje, S ;
Cano-Ott, D ;
Delbart, A ;
Derré, J ;
Díez, S ;
Giomataris, I ;
González-Romero, EM ;
Jeanneau, F ;
Karamanis, D ;
Leprêtre, A ;
Papadopoulos, I ;
Pavlopoulos, P ;
Villamarín, D .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2002, 481 (1-3) :120-129
[2]   The planispherical chamber: A parallax-free gaseous X-ray detector for imaging applications [J].
Brunbauer, F. M. ;
Oliveri, E. ;
Resnati, F. ;
Ropelewski, L. ;
Sauli, F. ;
Thuiner, P. ;
van Stenis, M. .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2017, 875 :16-20
[3]   Track Reconstruction Progress from the DMTPC directional dark matter experiment [J].
Deaconu, Cosmin ;
Druitt, Gabriela ;
Eggleston, Richard ;
Fisher, Peter ;
Lopez, Jeremy ;
Monroe, Jocelyn ;
Tomita, Hidefumi ;
Zayas, Evan .
13TH INTERNATIONAL CONFERENCE ON TOPICS IN ASTROPARTICLE AND UNDERGROUND PHYSICS, TAUP 2013, 2015, 61 :39-44
[4]   Optical readout of GEMs [J].
Fraga, FAF ;
Margato, LMS ;
Fetal, STG ;
Fraga, MMFR ;
Marques, RF ;
Policarpo, AJPL .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2001, 471 (1-2) :125-130
[5]   The GEM scintillation in He-CF4, Ar-CF4, Ar-TEA and Xe-TEA mixtures [J].
Fraga, MMFR ;
Fraga, FAF ;
Fetal, STG ;
Margato, LMS ;
Marques, RF ;
Policarpo, AJPL .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2003, 504 (1-3) :88-92
[6]   An optical readout TPC (O-TPC) for studies in nuclear astrophysics with gamma-ray beams at HIγS [J].
Gai, M. ;
Ahmed, M. W. ;
Stave, S. C. ;
Zimmerman, W. R. ;
Breskin, A. ;
Bromberger, B. ;
Chechik, R. ;
Dangendorf, V. ;
Delbar, Th ;
France, R. H., III ;
Henshaw, S. S. ;
Kading, T. J. ;
Martel, P. P. ;
McDonald, J. E. R. ;
Seo, P-N ;
Tittelmeier, K. ;
Weller, H. R. ;
Young, A. H. .
JOURNAL OF INSTRUMENTATION, 2010, 5
[7]   MPGD for breast cancer prevention: a high resolution and low dose radiation medical imaging [J].
Gutierrez, R. M. ;
Cerquera, E. A. ;
Manana, G. .
JOURNAL OF INSTRUMENTATION, 2012, 7
[8]  
Larue S. M., 2013, WITHROW MACEWENS SMA
[9]  
Lebrun F., 2016, [No title captured], Patent No. [US-9383457-B2-20160705, US 9383457 B2, 9383457]
[10]   Secondary scintillation in CF4: emission spectra and photon yields for MSGC and GEM [J].
Morozov, A. ;
Margato, L. M. S. ;
Fraga, M. M. F. R. ;
Pereira, L. ;
Fraga, F. A. F. .
JOURNAL OF INSTRUMENTATION, 2012, 7