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Modern Physics
Modern Physics

Electronics
Electronics

File
File

Slide 1
Slide 1

FYS0460 / FYSZ460 Ohjelmatyö Elektronisuhkulitografia
FYS0460 / FYSZ460 Ohjelmatyö Elektronisuhkulitografia

Electrochemistry - Wesleyan College Faculty
Electrochemistry - Wesleyan College Faculty

Basic Components
Basic Components

LOC07b Photoelectric Effect Part 2: The Einstein Equation
LOC07b Photoelectric Effect Part 2: The Einstein Equation

1/16/2015 Photoelectric Effect Part II The Einstein Equation
1/16/2015 Photoelectric Effect Part II The Einstein Equation

dmt 121/3 electronic i
dmt 121/3 electronic i

Photoelectric Effect - University of Colorado Boulder
Photoelectric Effect - University of Colorado Boulder

The Photoelectric Effect and Measuring Planck`s Constant
The Photoelectric Effect and Measuring Planck`s Constant

... the cathode and captured by the anode. Unfortunately, the measure current includes dark current (current when no light is present) and the current associated with electrons eject by incident light from the anode and captured by the cathode. ( Note in this case, in a formal sense, the names cathode a ...
Pre and Post Visit Materials for Shock Value
Pre and Post Visit Materials for Shock Value

...  Electromagnet – a type of magnet where the magnetic field is created by an electrical charge ...
Physics PHYS 275  Experimental Physics Lab Electron Diffraction
Physics PHYS 275 Experimental Physics Lab Electron Diffraction

Lab #1: Ohm’s Law (and not Ohm’s Law)
Lab #1: Ohm’s Law (and not Ohm’s Law)

Iodine Spectroscopy
Iodine Spectroscopy

Module 6: Field Emission Display
Module 6: Field Emission Display

... cathode is very small, the pressure can increase by several orders of magnitude. If a pumping source is capable of maintaining a vacuum of ~10 -8 T, then a vacuum at a location a centimeter away from the source could be 10 -5 T, when the separation distance between the anode and cathode is the dista ...
Teaching program
Teaching program

Chapter 2: Voltage and Current
Chapter 2: Voltage and Current

Electricity
Electricity

Basic Electrical Theory
Basic Electrical Theory

X rays - schoolphysics
X rays - schoolphysics

... vacuum ...
X rays - schoolphysics
X rays - schoolphysics

... vacuum ...
Experiment #2: Photoelectric Effect
Experiment #2: Photoelectric Effect

LED and ILED
LED and ILED

< 1 ... 40 41 42 43 44 45 46 47 >

Photomultiplier



Photomultiplier tubes (photomultipliers or PMTs for short), members of the class of vacuum tubes, and more specifically vacuum phototubes, are extremely sensitive detectors of light in the ultraviolet, visible, and near-infrared ranges of the electromagnetic spectrum. These detectors multiply the current produced by incident light by as much as 100 million times (i.e., 160 dB), in multiple dynode stages, enabling (for example) individual photons to be detected when the incident flux of light is very low. Unlike most vacuum tubes, they are not obsolete.The combination of high gain, low noise, high frequency response or, equivalently, ultra-fast response, and large area of collection has maintained photomultipliers an essential place in nuclear and particle physics, astronomy, medical diagnostics including blood tests, medical imaging, motion picture film scanning (telecine), radar jamming, and high-end image scanners known as drum scanners. Elements of photomultiplier technology, when integrated differently, are the basis of night vision devices.Semiconductor devices, particularly avalanche photodiodes, are alternatives to photomultipliers; however, photomultipliers are uniquely well-suited for applications requiring low-noise, high-sensitivity detection of light that is imperfectly collimated.
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