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3 edition of photovoltaic andphotorefractive effects in noncentrosymmetric materials found in the catalog.

photovoltaic andphotorefractive effects in noncentrosymmetric materials

Boris I. Sturman

photovoltaic andphotorefractive effects in noncentrosymmetric materials

by Boris I. Sturman

  • 184 Want to read
  • 4 Currently reading

Published by Gordon and Breach Science Publishers in Philadelphia .
Written in English

    Subjects:
  • Photovoltaic effect.,
  • Ferroelectric crystals.,
  • Piezoelectricity.

  • Edition Notes

    Includes bibliographical references (p. 218-234) and index.

    StatementBoris I. Sturman, Vladimir M. Fridkin ; translated from the Russian by J.E.S. Bradley.
    SeriesFerroelectricity and related phenomena -- v.8
    ContributionsFridkin, V. M.
    Classifications
    LC ClassificationsQC715.4
    The Physical Object
    Paginationviii, 238 p. :
    Number of Pages238
    ID Numbers
    Open LibraryOL21810559M
    ISBN 10288124498X

    [7] B. I. Sturman and Fridkin, V. M., The Photovoltaic and Photorefractive Effects in Noncentrosymmetric Materials, Gordon and Breach Science Publishers, Figures Figure 1: Schematics of two-dimensional TMD (left) and nanotube (right). Grey and yellow spheres represent transition-metal and chalcogen atoms, respectively.   Driven by the energy crisis all over the world, more and more researchers have begun to investigate a broad spectrum of candidate materials for thin-film photovoltaic cells as a renewable energy production [1, 2, 3].Among them, ferroelectric photovoltaic effect has been received considerable attention in the past few years because of its potential application in optoelectronics, .

      The bulk photovoltaic effect in non-centrosymmetric crystals is caused by asymmetric generation, recombination or scattering of excited non-equilibrium electronic carriers. Photovoltaic effects in (Pb,La)(Zr,Ti)O 3 -based ceramics have been investigated using linearly polarized light. The photovoltaic and photorefractive effects in noncentrosymmetric materials and photorefractive effects in noncentrosymmetric materials .

    Photovoltaic Principles and Me1hods SERI/SP Solar Information Module Published February • This book presents a nonmathematical explanation of the theory and design of PV solar cells and systems. It is written to address several audiences: engineers and scientists who desire anintroduction to the field. The Photovoltaic and Photorefractive Effects in Noncentrosymmetric Materials Gordon and Breach Science (). Alexe M. Local mapping of generation and recombination lifetime in BiFeO 3 single crystals by scanning probe photoinduced transient spectroscopy.


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Photovoltaic andphotorefractive effects in noncentrosymmetric materials by Boris I. Sturman Download PDF EPUB FB2

This volume is the first concentrated treatment of the characteristics, theory and potential applications of the photovoltaic effect in noncentrosymmetric materials, which include ferroelectrics and piezoelectrics. The book also deals with the relationship between the photovoltaic and the photorefractive effects.

Photovoltaic effects have been extensively studied in the past in symmetric materials such as silicon. This volume is the first concentrated treatment of the characteristics, theory and potential applications of the photovoltaic effect in noncentrosymmetric materials, which include ferroelectrics and piezoelectrics.

The book also deals with the relationship between the photovoltaic and the photorefractive effects. Photovoltaic effects have been extensively studied in the past in symmetric materials such as silicon.

This volume is the first concentrated treatment of the characteristics, theory and potential applications of the photovoltaic effect in noncentrosymmetric materials, which. book review A review of: “The photovoltaic and photorefractive effects in non-centrosymmetric materials.

Boris I. Sturman and Vladimir Fridkin, Volume 8 in the series: Ferroelectricity and related phenomena Editor, George W. Taylor, Gordon and Cited by: 2. The Photovoltaic and Photorefractive Effects in Noncentrosymmetric Materials BORIS I.

STURMAN Institute of Automation and Electrometry Russian Academy of Sciences, Siberian Branch Novosibirsk VLADIMIR M.

FRIDKIN Institute of Crystallography Russian Academy of Sciences Moscow Translated from the Russian by J.E.S. Bradley. The photovoltaic and photorefractive effects in noncentrosymmetric materials. Part 1 Phenomenological description: introduction the photovoltaic effect and photoelectric phenomena linear and circular photovoltaic effects polarization aspects of the photovoltaic effect in some photovoltaic andphotorefractive effects in noncentrosymmetric materials book types glass coefficients spatially oscillating and steady currents photoinduced fields experiment the magnetophotovoltaic effect .English, Book, Illustrated edition: The photovoltaic and photorefractive effects in noncentrosymmetric materials / Boris I.

Sturman, Vladimir M. Fridkin ; translated from the Russian by J.E.S. Bradley. Sturman, B. (Boris It︠s︡khakovich), The theory and the experimental characteristics of the bulk photovoltaic effect in ferroelectric and piezoelectric crystals first observed at the Institute of Crystallography have been reviewed.

I dedicate this review to the memory of B.K. Vainshtein whose help in performing these works was really inestimable. Photovoltaic lead lanthanum zirconate titanate films in a layered structure of different crystallographic orientations are fabricated by an optimized metalorganic deposition method.

Such films of () orientation exhibit a photovoltaic electrical power of approximately 20 times higher than that of random films. The anisotropic optical properties of the oriented films, including dark. ISBN: X OCLC Number: Description: viii, pages: illustrations ; 24 cm.

Contents: Part 1 Phenomenological description: introduction; the photovoltaic effect and photoelectric phenomena; linear and circular photovoltaic effects; polarization aspects of the photovoltaic effect in some crystal types; glass coefficients; spatially oscillating and steady. ISBN: X OCLC Number: Description: viii, p.: ill.

Contents: Part 1 Phenomenological description: introduction; the photovoltaic effect and photoelectric phenomena; linear and circular photovoltaic effects; polarization aspects of the photovoltaic effect in some crystal types; glass coefficients; spatially oscillating and steady currents; photoinduced.

Photovoltaic effects have been extensively studied in the past in symmetric materials such as silicon. This volume is the first concentrated treatment of the characteristics, theory and potential applications of the photovoltaic effect in noncentrosymmetric materials, which include ferroelectrics and piezoelectrics.

The book also deals with the relationship between the photovoltaic and the photorefractive effects. B. Sturman and V. Fridkin, The Photovoltaic and Photorefractive Effects in Noncentrosymmetric Materials (Gordon and Breach Science, Philadelphia, ). Jan P Gunter. Photovoltaic Effect: An Introduction to Solar Cells Text Book: Sections & References: The physics of Solar Cells by Jenny Nelson, Imperial College Press, Solar Cells by Martin A.

Green, The University of New South Wales, Silicon Solar Cells by Martin A. Green, The University of New South Wales, The photovoltaic and photorefractive effects in noncentrosymmetric materials by B. Sturman; 1 edition; First published in ; Subjects: Photovoltaic effect, Piezoelectricity, Ferroelectric crystals.

Abstract The bulk photovoltaic effect (BPVE) has drawn intensive attention due to its unique features that cannot be accessed with the conventional photovoltaic effect. However, the BPVE is observed in noncentrosymmetric materials and has been studied mainly for inorganic materials. Noncentrosymmetric crystal structure can lead to a peculiar kind of charge separation under illumination called the bulk photovoltaic (BPV) effect.

Solar cells made of such materials, however, typically have low efficiency. Yang et al. expanded the class of materials capable of exhibiting the BPV effect by making ordinarily centrosymmetric materials, such as SrTiO3 and TiO2, lose their.

The quantum phenomenon of shift photovoltaic current was predicted decades ago, but this effect was never observed directly because shift and ballistic currents coexist. The atomic-scale relaxation time of shift, along with the absence of a photo-Hall behavior, has made decisive measurement of shift elusive.

Here, we report a facile, direct-current, steady-state method for unambiguous. Sturman, V. Fridkin, The Photovoltaic and Photorefractive Effects in Noncentrosymmetric Materials (Gordon & Breach Science Publishers, Philadelphia, ) Google Scholar 4. Peithmann, A. Wiebrock, K.

Buse, Photorefractive properties of highly-doped. Fridkin: free download. Ebooks library. On-line books store on Z-Library | B–OK. Download books for free. Find books. Book Search tips Selecting this option will search all publications across the Scitation platform Selecting this option will search all publications for the Photovoltaic effect of lead lanthanum zirconate titanate in a layered film structure design The Photovoltaic and Photorefractive Effects in Noncentrosymmetric Materials (Gordon and.

Photovoltaic effect of lead lanthanum zirconate titanate in a layered film structure design Institute for Structural and Engineering Materials, National Institute of Advanced Industrial Science and Technology, Shuku-machi, Tosu, Saga,Japan The Photovoltaic and Photorefractive Effects in Noncentrosymmetric Materials.

Reduced conductivity (relative to that expected for band conductivity) in organic materials has been an issue in the performance of electronic, photovoltaic, and photorefractive devices.

Electro-optic activity in organic materials typically requires noncentrosymmetric (acentric) symmetry at both the molecular and macroscopic levels.