KnowraPhotomultiplier tubeLinked fromLinked fromThe 23 pages that link to Photomultiplier tube, each with the reason it gives.All 23Broader topic 4Related 15Compared with 4Photoelectric effectBroader topic: Its photocathode releases electrons that are multiplied into a measurable current.Fluorescence microscopyRelated: It can measure the weak emitted light collected in fluorescence imaging.Vacuum tubeBroader topic: It applies vacuum-tube electron multiplication to detecting very faint light.Particle detectorRelated: It amplifies the weak scintillation light generated by many detector materials.PhotodetectorBroader topic: It detects extremely weak light by multiplying photoelectrons into a measurable current.PhotodiodeCompared with: It detects very weak light through electron multiplication rather than a semiconductor junction.Super-KamiokandeRelated: Thousands of these sensors line the tank and register faint Cherenkov light.IceCube Neutrino ObservatoryRelated: These sensors register faint Cherenkov flashes in the Antarctic ice.Confocal microscopyRelated: It commonly measures the weak fluorescence collected from each scanned point.Optically stimulated luminescenceRelated: It detects the faint luminescence emitted from stimulated mineral grains.Quantum efficiencyBroader topic: Its photocathode quantum efficiency sets the probability that an arriving photon starts a pulse.Sudbury Neutrino ObservatoryRelated: Thousands of photomultiplier tubes registered faint flashes inside SNO’s water shield.KamiokandeRelated: Photomultiplier tubes lining Kamiokande’s tank registered faint Cherenkov flashes.Scintillation detectorRelated: Photomultiplier readout enabled scintillation counters to detect flashes electronically.Avalanche photodiodeCompared with: It offers strong gain but requires a vacuum tube rather than a semiconductor junction.Cherenkov detectorRelated: Photomultipliers detect the faint photons collected from the radiator.Masatoshi KoshibaRelated: These sensors recorded the faint flashes produced in Koshiba’s water detectors.Sodium iodideRelated: It detects the light flashes produced when radiation excites a NaI crystal.Atomic emission spectroscopyRelated: It can measure weak emission lines after the spectrometer isolates them.ScintillatorRelated: It detects and amplifies the weak flashes produced by many scintillators.BiophotonRelated: Experiments use photon-counting detectors to measure emissions too faint for unaided vision.PhototubeCompared with: Unlike a basic phototube, it multiplies electrons internally before producing its output.Superconducting detectorCompared with: It is a traditional photon detector, unlike superconducting devices that require cryogenic cooling.
KnowraPhotomultiplier tubeLinked fromLinked fromThe 23 pages that link to Photomultiplier tube, each with the reason it gives.All 23Broader topic 4Related 15Compared with 4Photoelectric effectBroader topic: Its photocathode releases electrons that are multiplied into a measurable current.Fluorescence microscopyRelated: It can measure the weak emitted light collected in fluorescence imaging.Vacuum tubeBroader topic: It applies vacuum-tube electron multiplication to detecting very faint light.Particle detectorRelated: It amplifies the weak scintillation light generated by many detector materials.PhotodetectorBroader topic: It detects extremely weak light by multiplying photoelectrons into a measurable current.PhotodiodeCompared with: It detects very weak light through electron multiplication rather than a semiconductor junction.Super-KamiokandeRelated: Thousands of these sensors line the tank and register faint Cherenkov light.IceCube Neutrino ObservatoryRelated: These sensors register faint Cherenkov flashes in the Antarctic ice.Confocal microscopyRelated: It commonly measures the weak fluorescence collected from each scanned point.Optically stimulated luminescenceRelated: It detects the faint luminescence emitted from stimulated mineral grains.Quantum efficiencyBroader topic: Its photocathode quantum efficiency sets the probability that an arriving photon starts a pulse.Sudbury Neutrino ObservatoryRelated: Thousands of photomultiplier tubes registered faint flashes inside SNO’s water shield.KamiokandeRelated: Photomultiplier tubes lining Kamiokande’s tank registered faint Cherenkov flashes.Scintillation detectorRelated: Photomultiplier readout enabled scintillation counters to detect flashes electronically.Avalanche photodiodeCompared with: It offers strong gain but requires a vacuum tube rather than a semiconductor junction.Cherenkov detectorRelated: Photomultipliers detect the faint photons collected from the radiator.Masatoshi KoshibaRelated: These sensors recorded the faint flashes produced in Koshiba’s water detectors.Sodium iodideRelated: It detects the light flashes produced when radiation excites a NaI crystal.Atomic emission spectroscopyRelated: It can measure weak emission lines after the spectrometer isolates them.ScintillatorRelated: It detects and amplifies the weak flashes produced by many scintillators.BiophotonRelated: Experiments use photon-counting detectors to measure emissions too faint for unaided vision.PhototubeCompared with: Unlike a basic phototube, it multiplies electrons internally before producing its output.Superconducting detectorCompared with: It is a traditional photon detector, unlike superconducting devices that require cryogenic cooling.