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Neutron Scattering Studies of Electron--phonon Interactions

Neutron Scattering Studies of Electron--phonon Interactions
Author:
Publisher:
Total Pages:
Release: 1977
Genre:
ISBN:

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This review is an attempt to summarize the areas in which neutron scattering has been used in studying electron-phonon interactions, and to display some of the key results. The examples chosen reflect the interests of the author and represent in no way a complete survey of the subject. 48 references.


Electron-Phonon Interactions and Phase Transitions

Electron-Phonon Interactions and Phase Transitions
Author: T. Riste
Publisher: Springer Science & Business Media
Total Pages: 431
Release: 2013-03-09
Genre: Science
ISBN: 1461589215

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This NATO Advanced Study Institute was the fourth in a series devoted to the subject of phase transitions and instabilities with particular attention to structural phase transforma~ions. Beginning wi th the first Geilo institute in 19'(1 we have seen the emphasis evolve from the simple quasiharmonic soft mode description within the Landau theory, through the unexpected spectral structure re presented by the "central peak" (1973), to such subjects as melting, turbulence and hydrodynamic instabilities (1975). Sophisticated theoretical techniques such as scaling laws and renormalization group theory developed over the same period have brought to this wide range of subjects a pleasing unity. These institutes have been instrumental in placing structural transformations clearly in the mainstream of statistical physics and critical phenomena. The present Geilo institute retains some of the counter cul tural flavour of the first one by insisting whenever possible upon peeking under the skirts of even the most successful phenomenology to catch a glimpse of the underlying microscopic processes. Of course the soft mode remains a useful concept, but the major em phasis of this institute is the microscopic cause of the mode softening. The discussions given here illustrate that for certain important classes of solids the cause lies in the electron phonon interaction. Three major types of structural transitions are considered. In the case of metals and semimetals, the electron phonon interaction relie6 heavily on the topology of the Fermi surface.


Atlas of Point Contact Spectra of Electron-Phonon Interactions in Metals

Atlas of Point Contact Spectra of Electron-Phonon Interactions in Metals
Author: A.V. Khotkevich
Publisher: Springer Science & Business Media
Total Pages: 162
Release: 2013-11-27
Genre: Science
ISBN: 146152265X

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The characteristics of electrical contacts have long attracted the attention of researchers since these contacts are used in every electrical and electronic device. Earlier studies generally considered electrical contacts of large dimensions, having regions of current concentration with diameters substantially larger than the characteristic dimensions of the material: the interatomic distance, the mean free path for electrons, the coherence length in the superconducting state, etc. [110]. The development of microelectronics presented to scientists and engineers the task of studying the characteristics of electrical contacts with ultra-small dimensions. Characteristics of point contacts such as mechanical stability under continuous current loads, the magnitudes of electrical fluctuations, inherent sensitivity in radio devices and nonlinear characteristics in connection with electromagnetic radiation can not be understood and altered in the required way without knowledge of the physical processes occurring in contacts. Until recently it was thought that the electrical conductivity of contacts with direct conductance (without tunneling or semiconducting barriers) obeyed Ohm's law. Nonlinearities of the current-voltage characteristics were explained by joule heating of the metal in the region of the contact. However, studies of the current-voltage characteristics of metallic point contacts at low (liquid helium) temperatures [142] showed that heating effects were negligible in many cases and the nonlinear characteristics under these conditions were observed to take the form of the energy dependent probability of inelastic electron scattering, induced by various mechanisms.


Phonons and Phonon Interactions

Phonons and Phonon Interactions
Author: Thor Anders Bak
Publisher:
Total Pages: 0
Release: 1964
Genre: Phonons
ISBN:

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Introduction / P.J.W. Debye -- Introductory lectures on the free phonon field / H.H. Jensen -- Some aspects of phonon-phonon-interaction / W. Ludwig -- Lectures on phonons and external radiation / A. Sjolander -- Interaction of x-rays with phonons / W. Cochran -- The electron-phonon interaction / J.J. Quinn -- Electron-phonon interaction in semicoductors studies by transport properties / H.G. Reik -- The Mossbauer effect and dynamics of atomic motions in condensed systems / K.S. Singwi -- Interaction of long-wavelength phonons with electrons / A.R. Mackintosh -- Phonons and neutron scattering / B.N. Brockhouse -- Interaction of phonons with photons : infrared, Raman, and Brillouin spectra / E. Burstein -- Electron-phonon interaction and superconductivity / J.R. Schrieffer -- Phonons in liquids / J. de Boer -- Phonons and lattice imperfection / A.A. Maradudin -- Microwave ultrasonics / E.H. Jacobsen -- Energy and charge transport in organic molecular crystals / R.G. Kepler.


Electron-phonon Interaction And Lattice Dynamics In High Tc Superconductors

Electron-phonon Interaction And Lattice Dynamics In High Tc Superconductors
Author: Han Zhang
Publisher: World Scientific
Total Pages: 358
Release: 2020-02-13
Genre: Science
ISBN: 9813271159

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Understanding the mechanism of the high-temperature superconductors has been a very important topic in condensed matter physics. Researchers have been trying to explain the role of electron-phonon interaction (EPI) in cuprates. Some important properties of the cuprates could not be explained by conventional BCS theory. This book contains the experimental and theoretical studies on the EPI. The experimental part covers the results of angle-resolved photoemission spectroscopy (ARPES), isotopic effect, elastic neutron scattering study of electron-phonon, lattice role and so on. The theoretical part covers the electron-phonon, polaron and bipolaron, effect of lattice, fine structure in the tunnelling spectra of electron-doped cuprates, identification of the bulk pairing symmetry in high-temperature superconductors.Students and researchers interested in high-temperature superconductors, especially the EPI in cuprates will find this title very useful.


Ultrafast Studies of Nonequilibrium Electron-phonon and Phonon-phonon Interactions in Photoexcited Lead Telluride

Ultrafast Studies of Nonequilibrium Electron-phonon and Phonon-phonon Interactions in Photoexcited Lead Telluride
Author: Mason Patrick Jiang
Publisher:
Total Pages:
Release: 2016
Genre:
ISBN:

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PbTe is a member of the group IV-VI semiconducting compounds that distinctly crystallize in three closely related structures (cubic, rhombohedral, orthorhombic). The determination of the structure depends on a delicate balance between levels of ionicity and covalency. Classified as an incipient ferroelectric, PbTe lies very close to the cubic/rhombohedral phase boundary, crystallizing in a paraelectric rocksalt cubic configuration, but with a proclivity to distort into a ferroelectric state, although never doing so. This instability leads to anomalous characteristics in the lattice dynamics of PbTe and is thought to contribute to its naturally low thermal conductivity, which makes it so effective as a thermoelectric compound. Specifically, recent inelastic neutron scattering (INS) measurements reveal that the soft transverse optical (TO) mode of the material is far more dispersive than expected (less dispersive trajectory measured in past INS studies) and features a split-peak lineshape at zone center, both indicative of a "giant" anharmonicity. The zone center frequency of this mode is the typical indicator of the nearness to a ferroelectric transition. To more deeply understand the microscopic mechanisms that link the structural instability of PbTe with its unusual phonon behavior, an ultrafast experimental approach is utilized in this thesis to characterize the material. In this tactic, the compound is impulsively photoexcited away from its ground state and a unique perspective is offered on the interactions that govern its relaxation back to equilibrium. Several variations of time-resolved pump-probe methods are employed. One highlighted result proceeds from a series of fluence, temperature, and pressure dependent IR pump-IR probe measurements on PbTe, which show previously unreported, prominent reflectivity oscillations from the rocksalt-structured material. The oscillations increase in amplitude with higher fluence and temperature while blueshifting in frequency with higher pressure. It is determined that these oscillations originate from the photoexcitation of a TO-TA (transverse acoustic) combination via the second-order Raman mechanism. Another result stems from time and momentum resolved x-ray measurements on PbTe, which show evidence that electron-phonon interactions play a significant role in the material's equilibrium ferroelectric instability. Here, we characterize the dispersion of correlated pairs of phonons with equal and opposite momenta produced by the absorption of pump pulses near the energy of the direct band gap. From the dispersion data away from zone center coupled with constrained density functional theory (CDFT) calculations, we find that photoexcitation leads to the TO branch hardening near zone center and softening near zone edge (X point). This is further tied to the weakening of long-range forces along the cubic direction and in the band picture, a reduction of the Peierls-like electronic instability. All of this reinforces the paraelectric state. It is thus determined that electron-phonon coupling drives ferroelectric instability in PbTe. Furthermore, from the dispersion data very near zone center, we find a highly dispersive feature that is identified as a heavily screened longitudinal optical (LO) phonon mode. This feature is attributed to the high photoexcitation density in the measurements and is reminiscent of LO mode softening seen in past INS studies of PbTe. It is concluded that this similarity is due to the effective equivalence between photoexcitation in our measurements and relatively high carrier doping in the samples of the past studies. This is significant since it reconciles the inconsistency between the dispersion results of the aforementioned recent INS measurements (measured on less doped samples) with those seen in the older studies.


Neutron and Synchrotron Radiation for Condensed Matter Studies

Neutron and Synchrotron Radiation for Condensed Matter Studies
Author: Jose Baruchel
Publisher: Springer Science & Business Media
Total Pages: 347
Release: 2013-12-18
Genre: Science
ISBN: 366222223X

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This second volume in the HERCULES Course on Neutron and Synchrotron Radiation for Condensed Matter Studies is devoted to selected applications in physics and chemistry of solids, with the fourteen chapters ranging from general considerations of symmetry in condensed matter to the most recent developments in magnetic excitations and electron spectroscopies in high Tc superconductors. The subjects were chosen either for their basic importance or because of interesting new developments, while the fifteen authors were selected both for their high scientific expertise and their teaching skills.