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The optomechanical circuit (OM) is interrogated by means of a reflection measurement, and the reflected field is then amplified using a phase-insensitive high-electron-mobility transistor (HEMT) amplifier.
Electromagnetic wave reflections from glass fiber reinforced epoxy matrix composites with 0°/90° and ±45° fiber oriented plain-woven glass fabric (PW-GFRP-0/90, PW-GFRP-±45) at incident angles of 30°, 40° and 50° were measured in the frequency range 50 75 GHz using a free-space reflection measurement system.
Then, optical reflection measurement of TiO2 films at normal incidence was carried out to obtain refractive indices.
A reproducibility error of 1.02% is obtained in the reflection measurement results for the reported optical system.
An acoustic reflection measurement technique is presented, which detects and evaluates the ultrasonic waves backscattered at the particles within a liquid dispersion.
By using the simple reflection measurement technique, a large electro-optic coefficient of r33=28 pm V−1 at 633 nm wavelength was obtained.
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D.K. and A.G. carried out optical reflection measurements and data analysis.
The piezoelectric and electrostriction parameters of the textured polycrystalline SbSI are evaluated from the reflection measurements.
The optical properties of these mirrors have been characterised by EUV reflection measurements.
Although reflection measurements also give information about defect depth, reflection measurements from only one side are not sufficient for assessing the whole cross section of the specimens.
Recent reflection measurements on gold gratings not only confirmed this but also resulted in a reliable calibration.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com