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Chapter 8a Wave Optics
Chapter 8a Wave Optics

... • Two coherent waves should be satisfied with the three conditions: what are they? ...
Spectral Characteristics of Semiconductor Lasers with Optical
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... detector array. Due to this size mismatch, the spectral image was centred on the detector and causes the spectrum truncation effect seen in this study. As seen in figure 2(a), using a 407 nm laser, the full width half maximum (FWHM) of the slit function of the spectroradiometer was determined to be ...
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... is some degree of compensation, due primarily to interstitial Mn ions, so that the hole density is smaller than density of magnetic impurities. Samples in which the density of interstitial Mn ions has been reduced by annealing tend to have higher carrier densities and metallic transport properties, ...
CHEM 322 - Queen`s Chemistry
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... motions of molecules. The foundations of electronic, vibrational, rotational and NMR spectroscopy will be discussed together with their applications. Winter Term. Prerequisite: CHEM 313* or CHEM 346* or PHYS 344*. Method: The course will be taught by Peter Loock, who has research interests in experi ...
Electrical Excitation of Surface Plasmons
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... electron tunneling. Excited SPPs then propagate towards the other end where they are converted to propagating photons by scattering. Thus, the nanowire functions as a transmission line mediating between the electrical feed point and the optical outcoupling region. The monocrystalline gold nanowires ...
TDLS98AbBook
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... In the mid infrared spectral region between 3 and 30 µm the majority of atmospheric relevant gases have pronounced rotational-vibrational absorption lines. Prerequisite for the use of these transitions for trace gas detection is the precise knowledge of line parameters like position, intensity, broa ...
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Optics Studio Manual - Department of Physics
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... lenses, telescopes, microscopes, and other imaging devices, polarization, and interference and diffraction were all well understood and used before the electromagnetic theory of light was espoused by Maxwell. It is important that you view optics as phenomena that can be understood and applied as suc ...
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Toward the development of a Three-Dimensional Mid–Field Microscope
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... Recently, an extraordinary transmission of light through small holes (<200 nm) in a thin metallic film has been described. This phenomenon has been shown to be the result of the photon-plasmon interaction in thin films where a periodic structure (such as a set of holes) is embedded in the film. One ...
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... improve and to check experimentally existing theories of spectral line broadening by plasmas. Most of these early works were concerned with the Stark broadening of hydrogen lines. Owing to the large, linear Stark effect in hydrogen, these studies were very useful for plasma diagnostic purposes. Howe ...
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... ➣ X-ray science: Ion recombination and photon emission; multi-photon processes; development of x-ray lasers; high-harmonic generation (HHG). ➣ Fundamental physics: Study of parity-nonconserving interactions; electric-dipole moments of neutrons, electrons and atoms; ‘new physics’ that goes beyond the ...
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... Quantum communication is carried out in the Fig. 1 configuration via the following protocol. The entire system is clocked. Time slots of signal and idler (say 400 ns long) are transmitted down optical fibers to the quantum memories. These slots are gated into the memory cavities — with their respect ...
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Ultrafast laser spectroscopy

Ultrafast laser spectroscopy is a spectroscopic technique that uses ultrashort pulse lasers for the study of dynamics on extremely short time scales (attoseconds to nanoseconds). Different methods are used to examine dynamics of charge carriers, atoms and molecules. Many different procedures have been developed spanning different time scales and photon energy ranges; some common methods are listed below.
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