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Application of Fast Light in Gravitational Wave Detection with ...  In this paper, we study several  designs for interferometric...
Application of Fast Light in Gravitational Wave Detection with ... In this paper, we study several designs for interferometric...

Microscopy 1: Optical
Microscopy 1: Optical

LAB 1 - SIMPLE DIFFRACTION, FOURIER OPTICS AND ACOUSTO
LAB 1 - SIMPLE DIFFRACTION, FOURIER OPTICS AND ACOUSTO

PDF Link
PDF Link

Catching the wave - Selected Topics in Quantum Electronics, IEEE
Catching the wave - Selected Topics in Quantum Electronics, IEEE

A new integrated optical angular velocity sensor
A new integrated optical angular velocity sensor

Kerr Effect - NUS Physics
Kerr Effect - NUS Physics

Active Control of Rogue Waves for Stimulated Supercontinuum
Active Control of Rogue Waves for Stimulated Supercontinuum

... Corning HNL ZD 1550) with very low dispersion at 1550 nm. The pump pulses are 3:7 ps in duration, as determined by autocorrelation. A weak seed pulse (0.01% of the pump intensity) derived from the same source, but with a shifted center frequency (1630 nm), is produced by broadening a portion of th ...
lecture_five_2016
lecture_five_2016

... sheet. The sheet is stretched aligning molecules and causing them to be birefringent. The molecules selectively attach themselves to aligned polymer molecules, so that absorption is high in one plane and weak in the other. The transmitted beam is linearly polarized. 5.2.4 Polarization of scattered l ...
Visualization of optical deflection and switching operations by a
Visualization of optical deflection and switching operations by a

Deviation from Snell`s law for beams transmitted
Deviation from Snell`s law for beams transmitted

Optical fiber sensors
Optical fiber sensors

Resins for Optics
Resins for Optics

... a material and it is generally represented by “n”. In other words, the refractive index is the resistance under which light passes through a material. A greater resistance results in an increased refractive index, while a smaller resistance results in a decreased index. Light has a property, which i ...
Nanostructured Holograms for Broadband Manipulation of Vector
Nanostructured Holograms for Broadband Manipulation of Vector

optics - einstein classes
optics - einstein classes

Methods for data, time and ultrastable frequency transfer through
Methods for data, time and ultrastable frequency transfer through

Optical Instruments
Optical Instruments

5150119
5150119

... Recently, photonic generation of RF, microwave and millimeterwave signals has been widely studied. This technique uses the optical fiber as the transmission medium for considerably stable carriers that are generated in a wide range of RF and microwave frequencies, with applications on mobile communi ...
Diffusion-controlled optical elements for
Diffusion-controlled optical elements for

... Ethylene glycol 共neat兲 and an ethylene glycol:water mixture 共85:15 by weight兲 were used as the fluids for the core 共nD = 1.431兲 and the cladding 共nD = 1.414兲. We chose these solutions for four reasons. First, they do not swell PDMS,11 and therefore do not affect the dimensions of the microchannels. ...
Scanning transmission soft x-ray microscopy at beamline X
Scanning transmission soft x-ray microscopy at beamline X

... slopes of a specimen17. In this setup a wave profiling grating 18 placed in front of the FZP effectively splits the beam into two interfering wavefronts that are slightly tilted with respect to each other. If the STXM is used with such an illumination, the intensity pattern in the detector plane ha ...
White-light Fourier transformer with low chromatic aberration
White-light Fourier transformer with low chromatic aberration

Decoherence: Phases washed out or smeared recoil drift
Decoherence: Phases washed out or smeared recoil drift

15-Gb/s Bit-Interleaved Optical Backplane Bus Using Volume
15-Gb/s Bit-Interleaved Optical Backplane Bus Using Volume

Diffraction
Diffraction

Negative Refraction Makes a Perfect Lens
Negative Refraction Makes a Perfect Lens

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Interferometry



Interferometry is a family of techniques in which waves, usually electromagnetic, are superimposed in order to extract information about the waves. Interferometry is an important investigative technique in the fields of astronomy, fiber optics, engineering metrology, optical metrology, oceanography, seismology, spectroscopy (and its applications to chemistry), quantum mechanics, nuclear and particle physics, plasma physics, remote sensing, biomolecular interactions, surface profiling, microfluidics, mechanical stress/strain measurement, and velocimetry.Interferometers are widely used in science and industry for the measurement of small displacements, refractive index changes and surface irregularities. In analytical science, interferometers are used in continuous wave Fourier transform spectroscopy to analyze light containing features of absorption or emission associated with a substance or mixture. An astronomical interferometer consists of two or more separate telescopes that combine their signals, offering a resolution equivalent to that of a telescope of diameter equal to the largest separation between its individual elements.
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