DocumentCode :
3122384
Title :
SFQ digital signal processing circuits for multi-quantum beam detectors using STJ array with neutron absorbers
Author :
Myoren, Hiroaki ; Akamatsu, Yuta ; Sasaki, Ryoichi ; Sato, Seiki ; Naruse, Masato ; Taino, Tohru
Author_Institution :
Grad. Sch. of Sci. & Eng., Saitama Univ., Saitama, Japan
fYear :
2013
fDate :
7-11 July 2013
Firstpage :
1
Lastpage :
3
Abstract :
We studied multi-quantum beam detectors using a superconducting tunnel junction (STJ) array with neutron absorbers. Using a neutron absorber for each of the STJs, we expected the STJ detector to exhibit a high spatial resolution and high detection efficiency for neutrons as well as radiative beams such as X-rays. To obtain diffraction patterns of the X-ray and neutrons, we propose the use of a multi-quantum beam detector using an STJ array and single flux quantum (SFQ) signal processing at low temperature because of its high-speed and low-power operation. The kinetic energy is determined for individual neutrons using time-of-flight-methods that employ SFQ time-to-digital converters (TDCs). To separately detect α-particles and γ-ray particles that are produced by the nuclear reaction between neutrons and boron, and X-ray photons, excess quasi-particle currents of the STJ detectors are processed by V/F type analog-to-digital converters and T-FF binary counters using SFQ digital circuits. To obtain the multiplexed readout of an STJ detector array, we designed a current bias switching circuit controlled by an SFQ driver for time-domain multiplexing. We designed the main circuits for this SFQ signal processing system and fabricated them using the ISTEC SRL Nb standard process II (STP2).
Keywords :
boron; diffraction; digital signal processing chips; multiplexing; particle detectors; readout electronics; superconducting junction devices; superconductive tunnelling; α-particles detection; γ-ray particles detection; ISTEC SRL Nb standard process II; SFQ digital circuit; SFQ digital signal processing circuit; SFQ driver; SFQ signal processing system; SFQ time-to-digital converter; STJ array; STJ detector array; STP2; T-FF binary counter; TDC; V/F type analog-to-digital converter; X-ray photons; X-rays; boron; current bias switching circuit; diffraction pattern; kinetic energy; multiplexed readout; multiquantum beam detector; neutron absorbers; nuclear reaction; radiative beams; single flux quantum signal processing; spatial resolution; superconducting tunnel junction array; time-domain multiplexing; time-of-flight-method; Arrays; Detectors; Multiplexing; Neutrons; Radiation detectors; Silicon; X-rays; Quantum beam detector; SFQ signal processing circuits; Superconducting tunnel junctions;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Superconductive Electronics Conference (ISEC), 2013 IEEE 14th International
Conference_Location :
Cambridge, MA
Print_ISBN :
978-1-4673-6369-3
Type :
conf
DOI :
10.1109/ISEC.2013.6604290
Filename :
6604290
Link To Document :
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