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  2. Photopyroelectric - Wikipedia

    en.wikipedia.org/wiki/Photopyroelectric

    In terms of the pyroelectric detector, it can be used as a sensor to support the system. Due to the unipolar axis characteristics of the pyroelectric crystal, it is characterized by asymmetry. Polarization due to changes in temperature, the so-called pyroelectric effect, is currently widely used in sensor technology.

  3. Pyroelectricity - Wikipedia

    en.wikipedia.org/wiki/Pyroelectricity

    This is the pyroelectric effect. All polar crystals are pyroelectric, so the 10 polar crystal classes are sometimes referred to as the pyroelectric classes. Pyroelectric materials can be used as infrared and millimeter wavelength radiation detectors. An electret is the electrical equivalent of a permanent magnet.

  4. Everhart–Thornley detector - Wikipedia

    en.wikipedia.org/wiki/Everhart–Thornley_detector

    The Everhart–Thornley Detector with its lightguide and highly efficient photomultiplier is the most frequently used detector in SEMs. The detector consists primarily of a scintillator inside a Faraday cage inside the specimen chamber of the microscope.

  5. Photodetector - Wikipedia

    en.wikipedia.org/wiki/Photodetector

    A microbolometer is a specific type of bolometer used as a detector in a thermal camera. Cryogenic detectors are sufficiently sensitive to measure the energy of single x-ray, visible and infrared photons. [18] Pyroelectric detectors detect photons through the heat they generate and the subsequent voltage generated in pyroelectric materials.

  6. Detectors for transmission electron microscopy - Wikipedia

    en.wikipedia.org/wiki/Detectors_for_transmission...

    Charge coupled device (CCD) cameras were first applied to transmission electron microscopy in the 1980s and later became widespread. [3] [4] For use in a TEM, CCDs are typically coupled with a scintillator such as single crystal Yttrium aluminium garnet (YAG) in which electrons from the electron beam are converted to photons, which are then transferred to the sensor of the CCD via a fiber ...

  7. Quantum well infrared photodetector - Wikipedia

    en.wikipedia.org/wiki/Quantum_well_infrared...

    Infrared detectors generally work by detecting the radiation emitted by an object, and the intensity of the radiation is determined by factors such as the object's temperature, distance, and size. Unlike most infrared photodetectors, QWIPs are independent of the band gap of the detecting material, because they are based on the optical ...

  8. X-ray microscope - Wikipedia

    en.wikipedia.org/wiki/X-ray_microscope

    Therefore, an X-ray microscope exposes film or uses a charge-coupled device (CCD) detector to detect X-rays that pass through the specimen. It is a contrast imaging technology using the difference in absorption of soft X-rays in the water window region (wavelengths: 2.34–4.4 nm, energies: 280–530 eV) by the carbon atom (main element ...

  9. Piezoresponse force microscopy - Wikipedia

    en.wikipedia.org/wiki/Piezoresponse_force_microscopy

    The resulting deflection of the probe cantilever is detected through standard split photodiode detector methods and then demodulated by use of a lock-in amplifier (LiA). In this way topography and ferroelectric domains can be imaged simultaneously with high resolution.