Development and testing of integrated readout electronics for next generation SiSeRO (Single electron Sensitive Read Out) devices
Tanmoy Chattopadhyay, Haley R. Stueber, Abigail Y. Pan, Sven Herrmann, Peter Orel, Kevan Donlon, Steven W. Allen, Marshall W. Bautz, Michael Cooper, Catherine E. Grant, Beverly LaMarr, Christopher Leitz, Andrew Malonis, Eric D. Miller, R. Glenn Morris, Gregory Prigozhin

TL;DR
This paper reports on the development and initial testing of advanced integrated readout electronics for next-generation SiSeRO devices, aiming to enhance noise performance and responsivity for high-speed charge detection.
Contribution
It introduces a new multi-channel ASIC for SiSeRO readout and presents initial test results of these detectors with the new electronics.
Findings
Successful first tests of SiSeRO CCDs with MCRC readout
Demonstrated improved noise performance and responsivity
Designed next-generation SiSeRO devices with enhanced geometries
Abstract
The first generation of Single electron Sensitive Read Out (SiSeRO) amplifiers, employed as on-chip charge detectors for charge-coupled devices (CCDs) have demonstrated excellent noise and spectral performance: a responsivity of around 800 pA per electron, an equivalent noise charge (ENC) of 3.2 electrons root mean square (RMS), and a full width half maximum (FWHM) energy resolution of 130 eV at 5.9 keV for a readout speed of 625 Kpixel/s. Repetitive Non Destructive Readout (RNDR) has also been demonstrated with these devices, achieving an improved ENC performance of 0.36 electrons RMS after 200 RNDR cycles. In order to mature this technology further, Stanford University, in collaboration with MIT Kavli Institute and MIT Lincoln Laboratory, are developing new SiSeRO detectors with improved geometries that should enable greater responsivity and improved noise performance. These include…
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Taxonomy
TopicsSemiconductor materials and devices · Electron and X-Ray Spectroscopy Techniques · Advanced Memory and Neural Computing
