High-sensitivity low-noise photodetector using a large-area silicon photomultiplier

Author:

Masuda TakahikoORCID,Hiramoto Ayami,Ang Daniel G.1ORCID,Meisenhelder Cole1,Panda Cristian D.2,Sasao Noboru,Uetake Satoshi,Wu Xing13ORCID,DeMille David P.3,Doyle John M.1,Gabrielse Gerald4,Yoshimura KojiORCID

Affiliation:

1. Harvard University

2. University of California

3. University of Chicago

4. Northwestern University

Abstract

The application of silicon photomultiplier (SiPM) technology for weak-light detection at a single photon level has expanded thanks to its better photon detection efficiency in comparison to a conventional photomultiplier tube (PMT). SiPMs with large detection area have recently become commercially available, enabling applications where the photon flux is low both temporarily and spatially. On the other hand, several drawbacks exist in the usage of SiPMs such as a higher dark count rate, many readout channels, slow response time, and optical crosstalk; therefore, users need to carefully consider the trade-offs. This work presents a SiPM-embedded compact large-area photon detection module. Various techniques are adopted to overcome the disadvantages of SiPMs so that it can be generally utilized as an upgrade from a PMT. A simple cooling component and recently developed optical crosstalk suppression method are adopted to reduce the noise which is more serious for larger-area SiPMs. A dedicated readout circuit increases the response frequency and reduces the number of readout channels. We favorably compare this design with a conventional PMT and obtain both higher photon detection efficiency and larger-area acceptance.

Funder

Okayama University

Japan Society for the Promotion of Science

Matsuo Foundation for Science Promotion

National Science Foundation

Gordon and Betty Moore Foundation

Alfred P. Sloan Foundation

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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