The behavior of silicon photomultipliers (SiPMs) is investigated at low temperatures: I–V characteristics, breakdown voltage, dark noise, afterpulsing, crosstalk, pulse shape, gain and photon detection efficiency are studied as a function of temperature in the range 50K<T<320K. The measurements are discussed on the basis of the temperature dependent properties of silicon and of the models related to carrier generation, transport and multiplication in high electric field. The conclusion is drawn that SiPMs provide an excellent alternative to vacuum tube photomultipliers (PMTs) in low temperature environments, even better than in room temperature ones: in particular they excel in the interval 100K<T<200K
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...
We have investigated the performance of a few silicon photomultipliers to readout inorganic scintill...
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...
The behavior of silicon photomultipliers (SiPMs) is investigated at low temperatures: I–V characteri...
The behavior of silicon photomultipliers (SiPMs) is investigated at low temperatures: I–V characteri...
We investigate the behavior of silicon photomultipliers (SiPMs) at low temperatures: I–V characteris...
The Silicon photomultipliers are extensively studied at room temperatures whereas only a limited res...
Abstract. Silicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors based on th...
The performances of silicon photomultipliers with different structures are investigated at low tempe...
The performances of silicon photomultipliers with different structures are investigated at low tempe...
The silicon photomultipliers (SiPMs) emerged as a promising solution in many applications, like high...
We report on the performance of silicon photomultiplier (SiPM) light sensors operating in electric f...
We report on the performance of silicon photomultiplier (SiPM) light sensors operating in electric f...
We have investigated the performance of a few silicon photomultipliers to readout inorganic scintill...
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...
We have investigated the performance of a few silicon photomultipliers to readout inorganic scintill...
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...
The behavior of silicon photomultipliers (SiPMs) is investigated at low temperatures: I–V characteri...
The behavior of silicon photomultipliers (SiPMs) is investigated at low temperatures: I–V characteri...
We investigate the behavior of silicon photomultipliers (SiPMs) at low temperatures: I–V characteris...
The Silicon photomultipliers are extensively studied at room temperatures whereas only a limited res...
Abstract. Silicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors based on th...
The performances of silicon photomultipliers with different structures are investigated at low tempe...
The performances of silicon photomultipliers with different structures are investigated at low tempe...
The silicon photomultipliers (SiPMs) emerged as a promising solution in many applications, like high...
We report on the performance of silicon photomultiplier (SiPM) light sensors operating in electric f...
We report on the performance of silicon photomultiplier (SiPM) light sensors operating in electric f...
We have investigated the performance of a few silicon photomultipliers to readout inorganic scintill...
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...
We have investigated the performance of a few silicon photomultipliers to readout inorganic scintill...
International audienceSilicon PhotoMultiplier (SiPM) is composed of extremely sensitive photosensors...