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TABLE 1 Summary of the Advantages, Disadvantages, and General Applications of High-Resolution Electrical, Near- and Far-Field Thermal Techniques (An Indicative Reference Is Included for Each Technique)—Cont’d Method Principle (mm) (K) (ms) 100 105 103 Advantages Disadvantages Optical interferometry (Corke et al., 1983) Thermal expansion or refractive index change l Can be integrated in remote detection systems l Cross talk with other stimulus as strain/stress and bending Nitrogen-vacancy (Kucsko et al., 2013) Quantum mechanical spin 101 103 104 l Fully remote control of the system: manipulation of spin using microwave pulses and detection by laser radiation. Plasmon energy expansion thermometry (Mecklenburg et al., 2015) Shift of electron energy loss peaks 102 101 103 l High spatial resolution l High spatial resolution l High temperature uncertainty l Needs a transmission electron microscope in Thermal scanning electron microscopy (Wu and Hull, 2012) Thermal diffuse scattering in electron backscatter diffraction 101 101 104 l High spatial resolution l High temperature uncertainty l Temperature determination requires a standard Typical Resolution dx dT dT l All optical temperature determination l Low spatial resolution in the transverse direction l High integration times required for low temperature uncertainty values l Critically depends of isotopically pure 12C diamond l Sophisticated data analysis high vacuum conditions to measure temperature sample to calibrate the effect of beam current, beam voltage, stage-detector geometry, sample materials, etc.PDF Image | HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS
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