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Titlebook: Collective Excitations in the Antisymmetric Channel of Raman Spectroscopy; Hsiang-Hsi Kung Book 2022 Springer Nature Switzerland AG 2022 U

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2190-5053 d Raman spectroscopy as a tool for identifying optically excited collective modes in strongly correlated electron systems and three-dimensional topological insulators.  .978-3-030-89334-7978-3-030-89332-3Series ISSN 2190-5053 Series E-ISSN 2190-5061
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Collective Excitations in the Antisymmetric Channel of Raman Spectroscopy
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Experimental Setup,many other factors (Hayes and Loudon, Scattering of light by crystals. Courier Corporation, Chelmsford, 2012; Palmer, Loewen, Diffraction grating handbook. Newport Corporation, New York, 2005). Given the diversity and breadth of this topic, it is impossible to have a complete account of all involved
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Introduction,ng it particularly suitable for studying low energy collective modes in systems with nontrivial electron correlation. In the condensed matter physics, Raman spectroscopy has been crucial in understanding superconductivity by studying symmetry of the Cooper pair breaking peak, electron–phonon interac
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Experimental Setup, Phys 2:387–398, 1928), many improvements have been done on Raman spectroscopy apparatus in the past century. Raman scattering setup has evolved into very diverse forms, from portable or even handheld Raman spectrometers widely used by forensic scientists and minefield workers to gigantic state-of-t
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Raman Scattering in URu2Si2, material of undiminished interest in the condensed matter community for over thirty years. I will first give a short overview on the heavy fermion physics and the exotic phases in this compound, where focus will be given on the experimental results [Sect. 3.1]. Then I will describe typical sample p
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