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Integrated X-ray L Absorption Spectra. Counting Holes in Ni
Integrated X-ray L Absorption Spectra. Counting Holes in Ni

Effect of Macroscopic Structure in Iridescent Color
Effect of Macroscopic Structure in Iridescent Color

... trip amount to 504 and 600 nm for blue and yellow feathers, respectively, which are comparable with the spectral peak positions in Figs. 2A and 2B. These path lengths are calculated using the mean refractive index, which is the spatial average of the indices of 1.0 for air and 2.0 for melanin granul ...
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... with the E × B drift velocity, while the second term is the parallel component of the current which reduces to (∇×B)k in steady state. The system (1-2) is hyperbolic, can be evolved in time, and is much simpler than the full MHD equations. In order to numerically solve this system we utilize its clo ...
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... device is represented with a different arm length device corresponding to the refractive index shift and bar state is represented by symmetrical arm length, as it is shown in Fig. 1 (b) and Fig. 1(c) respectively[3]. Fig. 1 (a) (a) shows the schematic diagram of an optical mode switch. By injecting ...
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... accomplished by in-flight collinear[1] optical pumping with resonant circularly polarized laser light. Optical polarization is a well-developed technique in the vapour phase[2], particularly for alkali atoms. Noble gases may be spin-exchange polarized using optically polarized alkalis[3] and these h ...
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... frequency between modes [5-71. This model was also used with cells outside the laser cavity [8-131. The object of this work is to check the validity of the relationship (1) because there is a great disparity * CIT, UTN. ** CONICET ...
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... If one measures the outgoing polarization as a function of the magnetic field B0, then Pz ( B0 ) is the Fourier transform of the wavelength spectrum Φ(λ) of the beam. This is an elegant method to measure the time-of-flight spectrum of a continuous atomic beam. ...
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< 1 ... 173 174 175 176 177 178 179 180 181 ... 280 >

Magnetic circular dichroism

Magnetic circular dichroism (MCD) is the differential absorption of left and right circularly polarized (LCP and RCP) light, induced in a sample by a strong magnetic field oriented parallel to the direction of light propagation. MCD measurements can detect transitions which are too weak to be seen in conventional optical absorption spectra; they can also probe paramagnetic properties and the symmetry of the electronic levels of the studied systems, such as metal ion sites.
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