Photon counting arrays for astrophysics

被引:18
作者
Zappa, F.
Tisa, S. [1 ]
Cova, S.
Maccagnani, P.
Saletti, R.
Roncella, R.
Baronti, F.
Calia, D. Bonaccini
Silber, A.
Bonanno, G.
Belluso, M.
机构
[1] Politecn Milan, Milan, Italy
[2] CNR, IMM, I-40126 Bologna, Italy
[3] Univ Pisa, I-56100 Pisa, Italy
[4] ESO, Garching, Germany
[5] INAF, Astrophys Observ, Catania, Italy
关键词
ADAPTIVE-OPTICS; AVALANCHE PHOTODIODES;
D O I
10.1080/09500340600742320
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
A compact system for counting and time-tagging single photons is presented, based on a monolithic array sensor of 60 pixels able to detect single photons, namely the single-photon avalanche diode array (SPADA). First, the working principle and performance of the single-photon detector pixel is detailed, with particular attention paid to monolithic array integration. Then the electronics needed to quench each pixel after avalanche ignition, namely the active-quenching circuit (AQC) is discussed, since the features of this quenching electronics dramatically affect the operating conditions of the detector, hence its actual performance. The discussion then focuses on integration of the SPADA system into Astrophysics applications such as adaptive optics, fast-transient imaging and atmospheric layer sensing. The whole electronics necessary to control SPADA operating conditions and temperature is also described, together with the complete opto-mechanics used to focus the telescope pupil onto the detector. Finally, experimental results are reported.
引用
收藏
页码:163 / 189
页数:27
相关论文
共 23 条
[1]  
Antognetti P., 1975, P 2 ISPRA NUCL ELECT, P453
[2]  
ANTOGNETTI P, 1975, EURATOM PUBLICATIO E, V537
[3]   MACAO-VLTI: An adaptive optics system for the ESO interferometer [J].
Arsenault, R ;
Alonso, J ;
Bonnet, H ;
Brynnel, J ;
Delabre, B ;
Donaldson, R ;
Dupuy, C ;
Fedrigo, E ;
Farinato, J ;
Hubin, N ;
Ivanescu, L ;
Kasper, M ;
Paufique, J ;
Rossi, S ;
Tordo, S ;
Stroebele, S ;
Lizon, JL ;
Gigan, P ;
Delplancke, F ;
Silber, A ;
Quattri, M ;
Reiss, R .
ADAPTIVE OPTICAL SYSTEM TECHNOLOGIES II, PTS 1 AND 2, 2003, 4839 :174-185
[4]   Adaptive optics for ESO VLT-Interferometer [J].
Bonaccini, D ;
Rigaut, F ;
Glindemann, A ;
Dudziak, G ;
Mariotti, JM ;
Paresce, F .
ADAPTIVE OPTICAL SYSTEM TECHNOLOGIES, PARTS 1 AND 2, 1998, 3353 :224-232
[5]   CHARACTERIZATION OF SILICON AVALANCHE PHOTODIODES FOR PHOTON-CORRELATION MEASUREMENTS .2. ACTIVE QUENCHING [J].
BROWN, RGW ;
JONES, R ;
RARITY, JG ;
RIDLEY, KD .
APPLIED OPTICS, 1987, 26 (12) :2383-2389
[6]   Cone-effect-free adaptive-optics laser-guide-star development for the ELTs [J].
Calia, DB ;
Myers, RM ;
Zappa, F ;
Love, GD ;
Morris, TJ ;
Hackenberg, W ;
Wilson, R ;
Buscher, DF .
ADVANCEMENTS IN ADAPTIVE OPTICS, PTS 1-3, 2004, 5490 :1315-1326
[7]   Evolution and prospects for single-photon avalanche diodes and quenching circuits [J].
Cova, S ;
Ghioni, M ;
Lotito, A ;
Rech, I ;
Zappa, F .
JOURNAL OF MODERN OPTICS, 2004, 51 (9-10) :1267-1288
[8]   TOWARDS PICOSECOND RESOLUTION WITH SINGLE-PHOTON AVALANCHE-DIODES [J].
COVA, S ;
LONGONI, A ;
ANDREONI, A .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1981, 52 (03) :408-412
[9]   Avalanche photodiodes and quenching circuits for single-photon detection [J].
Cova, S ;
Ghioni, M ;
Lacaita, A ;
Samori, C ;
Zappa, F .
APPLIED OPTICS, 1996, 35 (12) :1956-1976
[10]   PHOTON-COUNTING TECHNIQUES WITH SILICON AVALANCHE PHOTODIODES [J].
DAUTET, H ;
DESCHAMPS, P ;
DION, B ;
MACGREGOR, AD ;
MACSWEEN, D ;
MCINTYRE, RJ ;
TROTTIER, C ;
WEBB, PP .
APPLIED OPTICS, 1993, 32 (21) :3894-3900