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Dielectric coatings-based polarization beam splitters were used to construct optical circulators in the early stage of circulator development.
A set of two half-wave plates and polarizing beam splitters were used to split and attenuate the beam to obtain the desired power at the focus of the objective, and to provide an output for a spectrum analyzer to monitor the mode-locked output.
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Two non-polarizing fiber based beam splitters are combined to form a Mach-Zehnder interferometer, while two polarizing beam splitters are used to obtain a polarization sensitive detection.
The PL and absorption spectra were measured using a Nicolet Magna 860 Fourier transform infrared (FTIR) spectrometer (Thermo Fisher Scientific Inc., Waltham, MA, USA), in which a liquid-nitrogen cooled InSb detector and a CaF2 beam splitter were used.
494/406 nm excitation filters and a 500-nm long-pass beam splitter were used, and an image pair was obtained in every 200 ms.
The IR source was a mid-IR lamp, and a KBr beam splitter was used.
The beam splitter is used to adjust the energy of the reference beam and the object beam.
At the output end of the other lens, a beam splitter is used to split the beam into two paths.
A dichroic beam splitter is used to measure CES and BES spectra simultaneously with sharing the same observation and transmission components which include the line of sight, lenses, and fiber bundles.
An HFT UV/488/543/633 beam splitter was used.
A UV/488/543/633 main beam splitter was used.
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