Silicon photomultipliers (SiPMs) are an excellent candidate for the development of large-area light sensors. Large SiPM-based detectors require low-noise preamplifiers to maximize the signal coupling between the sensor and the read-out electronics. This paper reports on the development of a low-noise transimpedance amplifier sensitive to single-photon signals at cryogenic temperature. The amplifier is used to read-out a 1-cm(2) SiPM with a signal-to-noise ratio in excess of 40
A preamplifier design is presented which is based on a common-drain JFET input. The midband noise pe...
Silicon PhotoMultiplier (SiPM) are extremely sensitive photosensor based on the use of Geiger Mode A...
We present the simulated and measured performance of a transimpedance amplifier designed in a quarte...
Dark matter search experiments, with liquid noble gas targets, require a detector with a low noise ...
The behavior of silicon photomultipliers (SiPMs) is investigated at low temperatures: I–V characteri...
We discuss the design, construction, and testing of a cryogenic transimpedance amplifier. This ampli...
The Silicon photomultipliers are extensively studied at room temperatures whereas only a limited res...
ALCOR is a mixed-signal ASIC developed to readout silicon photomultipliers at low temperature. The c...
The silicon photomultipliers (SiPMs) emerged as a promising solution in many applications, like high...
Silicon photomultipliers (SiPMs) are single-photon sensitive solid-state detectors that are becoming...
Silicon photomultipliers (SiPM) are pixelated single-photon detectors combining high sensitivity, go...
Abstract. Silicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors based on th...
Silicon photomultipliers (SiPMs) offer high gain and fast response to light, making them interesting...
The development of detectors based on liquefied noble gas (LAr, LXe) is mandatory for experiments de...
We report on the characterization of near-ultraviolet high-density silicon photomultiplier (SiPM) de...
A preamplifier design is presented which is based on a common-drain JFET input. The midband noise pe...
Silicon PhotoMultiplier (SiPM) are extremely sensitive photosensor based on the use of Geiger Mode A...
We present the simulated and measured performance of a transimpedance amplifier designed in a quarte...
Dark matter search experiments, with liquid noble gas targets, require a detector with a low noise ...
The behavior of silicon photomultipliers (SiPMs) is investigated at low temperatures: I–V characteri...
We discuss the design, construction, and testing of a cryogenic transimpedance amplifier. This ampli...
The Silicon photomultipliers are extensively studied at room temperatures whereas only a limited res...
ALCOR is a mixed-signal ASIC developed to readout silicon photomultipliers at low temperature. The c...
The silicon photomultipliers (SiPMs) emerged as a promising solution in many applications, like high...
Silicon photomultipliers (SiPMs) are single-photon sensitive solid-state detectors that are becoming...
Silicon photomultipliers (SiPM) are pixelated single-photon detectors combining high sensitivity, go...
Abstract. Silicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors based on th...
Silicon photomultipliers (SiPMs) offer high gain and fast response to light, making them interesting...
The development of detectors based on liquefied noble gas (LAr, LXe) is mandatory for experiments de...
We report on the characterization of near-ultraviolet high-density silicon photomultiplier (SiPM) de...
A preamplifier design is presented which is based on a common-drain JFET input. The midband noise pe...
Silicon PhotoMultiplier (SiPM) are extremely sensitive photosensor based on the use of Geiger Mode A...
We present the simulated and measured performance of a transimpedance amplifier designed in a quarte...