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Atomic structure --- Electron nuclear double resonance spectroscopy. --- Optical pumping. --- Measurement.
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ESR (ELECTRON SPIN RESONANCE) --- RADICALS (CHEMISTRY) --- ENERGY LEVEL --- TRANSITION METALS --- RELAXATION --- ENDOR (ELECTRON NUCLEAR DOUBLE RESONANCE) --- ESR (ELECTRON SPIN RESONANCE) --- RADICALS (CHEMISTRY) --- ENERGY LEVEL --- TRANSITION METALS --- RELAXATION --- ENDOR (ELECTRON NUCLEAR DOUBLE RESONANCE)
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Experimental solid state physics --- 538.91 --- Crystals --- -Electron nuclear double resonance spectroscopy --- Electron paramagnetic resonance spectroscopy --- Point defects --- Solids --- -Solid state physics --- Transparent solids --- Defects, Point --- Dislocations in crystals --- Impurity centers --- Electron spin double resonance spectroscopy --- ENDOR (Spectrum analysis) --- Crystallography --- Powders --- Electron spin resonance spectroscopy --- EPR spectroscopy --- ESR spectroscopy --- Spectrum analysis --- Structures, including transitions --- Defects --- Optical properties --- Electron nuclear double resonance spectroscopy. --- Electron paramagnetic resonance spectroscopy. --- Point defects. --- Defects. --- Optical properties. --- -Structures, including transitions --- 538.91 Structures, including transitions --- -Defects, Point --- Electron nuclear double resonance spectroscopy --- Lattice defects --- Twinning (Crystallography)
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Nuclear magnetic resonance --- 537.6 --- 537.6 Magnetism --- Magnetism --- Experimental solid state physics --- Theoretical spectroscopy. Spectroscopic techniques --- fysicochemie --- Electromagnetism. Ferromagnetism --- Nuclear magnetic resonance. --- EPR. --- Electric quadrupole effects. --- Lattice relaxation. --- Magnetic dipolar braodening of rigid lattices. --- Résonance magnétique nucléaire --- Nuclear quadrupole resonance. --- Endor (electron nuclear double resonance) --- Esr (electron spin resonance) --- Magnetic relaxation
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The present volume “New Trends in Lithium Niobate: From Bulk to Nanocrystals” contains the materials of a Special Issue of the MDPI journal Crystals dedicated to the memory of Prof. Dr. Ortwin F. Schirmer and provides a new synopsis of his research focusing on LiNbO3. It also includes recent developments, exemplifying the continued interest in this outstanding ferroelectric, non-linear optical and holographic crystal as a workhorse for testing and realizing new ideas and applications.This book starts with reviews on intrinsic and extrinsic crystal defects in LiNbO3 of single-crystal, thin-film or nano-powder forms, studied by various optical, magnetic resonance and nuclear methods, clarifying in particular the reasons for the suppression of anion vacancy formation upon thermal reduction, mechano-chemical processing or irradiations of various types. The reviews are followed by research papers on the experimental and theoretical investigation of small polarons, together with recent results on the properties of Li(Nb,Ta)O3 mixed crystals. Among the various contributions dealing with nonlinear optical applications, papers on device development, entangled photon pair generation and thin films on the Lithium Niobate On Insulator (LNOI) platform can also be found.
Research & information: general --- lithium niobate --- small polaron hopping --- transient absorption --- mode-locked laser --- nonlinear mirror mode locking --- lithium tantalate --- crystal structure --- chemical composition --- ferroelectrics --- second harmonic generation --- lead-free piezoelectrics --- intrinsic defects --- extrinsic defects --- elemental doping --- ferromagnetism --- diluted-magnetic oxides --- LiNbO3 --- LiTaO3 --- oxide crystals --- lanthanides --- luminescence --- LNOI --- ferroelectric domains --- domain-wall conduction --- AFM --- thin film lithium niobate --- TFLN --- x-cut LN --- domain walls --- piezoresponse force microscopy --- second-harmonic generation --- Raman scattering --- electro-optics --- whispering gallery resonators --- polarons --- photorefractivity --- Marcus-Holstein’s theory --- Monte Carlo simulations --- strontium titanate --- self-trapped electrons --- oxygen vacancies --- defects --- impurity --- intrinsic defect --- paramagnetic ion --- electron paramagnetic resonance --- electron nuclear double resonance --- lithium vacancy --- lithium --- niobate --- epitaxy --- thin film --- liquid phase epitaxy --- molecular beam epitaxy --- sputtering --- pulsed laser deposition --- chemical vapor deposition --- lithium niobate-tantalate --- piezoelectric --- acoustic --- high-temperature --- sensor --- Q-factor --- BAW resonator --- parametric down-conversion --- photon-pair generation --- extended phase matching --- microring resonator --- varFDTD --- lithium tantalate thin film --- electro-optical devices --- lattice location --- radiation damage --- ion beam analysis --- hyperfine interactions --- charge localization --- lattice deformation --- optical response --- density-functional theory --- Bethe-Salpeter equation --- nanoparticles --- nanopowders --- X-ray diffraction --- Raman spectroscopy --- temperature dependence of electroconductivity --- bipolarons --- defect structure and generation --- Li diffusion --- bulk crystals --- thin films --- nanocrystals --- lithium niobate --- small polaron hopping --- transient absorption --- mode-locked laser --- nonlinear mirror mode locking --- lithium tantalate --- crystal structure --- chemical composition --- ferroelectrics --- second harmonic generation --- lead-free piezoelectrics --- intrinsic defects --- extrinsic defects --- elemental doping --- ferromagnetism --- diluted-magnetic oxides --- LiNbO3 --- LiTaO3 --- oxide crystals --- lanthanides --- luminescence --- LNOI --- ferroelectric domains --- domain-wall conduction --- AFM --- thin film lithium niobate --- TFLN --- x-cut LN --- domain walls --- piezoresponse force microscopy --- second-harmonic generation --- Raman scattering --- electro-optics --- whispering gallery resonators --- polarons --- photorefractivity --- Marcus-Holstein’s theory --- Monte Carlo simulations --- strontium titanate --- self-trapped electrons --- oxygen vacancies --- defects --- impurity --- intrinsic defect --- paramagnetic ion --- electron paramagnetic resonance --- electron nuclear double resonance --- lithium vacancy --- lithium --- niobate --- epitaxy --- thin film --- liquid phase epitaxy --- molecular beam epitaxy --- sputtering --- pulsed laser deposition --- chemical vapor deposition --- lithium niobate-tantalate --- piezoelectric --- acoustic --- high-temperature --- sensor --- Q-factor --- BAW resonator --- parametric down-conversion --- photon-pair generation --- extended phase matching --- microring resonator --- varFDTD --- lithium tantalate thin film --- electro-optical devices --- lattice location --- radiation damage --- ion beam analysis --- hyperfine interactions --- charge localization --- lattice deformation --- optical response --- density-functional theory --- Bethe-Salpeter equation --- nanoparticles --- nanopowders --- X-ray diffraction --- Raman spectroscopy --- temperature dependence of electroconductivity --- bipolarons --- defect structure and generation --- Li diffusion --- bulk crystals --- thin films --- nanocrystals
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Chemistry, Physical. --- Electron Spin Resonance Spectroscopy. --- Magnetic Resonance Spectroscopy. --- 543.422.27 --- Chemistry, Physical and theoretical --- Electron paramagnetic resonance --- Electron resonance --- Electron spin resonance --- EPR (Magnetic resonance) --- ESR (Magnetic resonance) --- Paramagnetic resonance, Electron --- Magnetic resonance --- Paramagnetism --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- In Vivo NMR Spectroscopy --- MR Spectroscopy --- Magnetic Resonance --- NMR Spectroscopy --- NMR Spectroscopy, In Vivo --- Nuclear Magnetic Resonance --- Spectroscopy, Magnetic Resonance --- Spectroscopy, NMR --- Spectroscopy, Nuclear Magnetic Resonance --- Magnetic Resonance Spectroscopies --- Magnetic Resonance, Nuclear --- NMR Spectroscopies --- Resonance Spectroscopy, Magnetic --- Resonance, Magnetic --- Resonance, Nuclear Magnetic --- Spectroscopies, NMR --- Spectroscopy, MR --- Magnetic Resonance Imaging --- Electron Spin Resonance --- ENDOR --- Electron Nuclear Double Resonance --- Electron Paramagnetic Resonance --- Paramagnetic Resonance --- Paramagnetic Resonance, Electron --- Resonance, Electron Paramagnetic --- Resonance, Electron Spin --- Resonance, Paramagnetic --- Spin Labels --- Physical Chemistry --- Chemistries, Physical --- Physical Chemistries --- Using ultra-high frequency electromagnetic waves (microwaves). Electron spin resonance spectroscopy --- Chemistry, Physical and theoretical. --- Electron paramagnetic resonance. --- 543.422.27 Using ultra-high frequency electromagnetic waves (microwaves). Electron spin resonance spectroscopy --- Chemistry, Physical --- Electron Spin Resonance Spectroscopy --- Magnetic Resonance Spectroscopy
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