Electronic Structure of the YH[sub]3[/sub] Phase from Angle-Resolved Photoemission Spectroscopy

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Book Synopsis Electronic Structure of the YH[sub]3[/sub] Phase from Angle-Resolved Photoemission Spectroscopy by :

Download or read book Electronic Structure of the YH[sub]3[/sub] Phase from Angle-Resolved Photoemission Spectroscopy written by and published by . This book was released on with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

The Electronic Structure of Solids Studies Using Angle Resolved Photoemission Spectroscopy

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ISBN 13 :
Total Pages : 83 pages
Book Rating : 4.:/5 (355 download)

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Book Synopsis The Electronic Structure of Solids Studies Using Angle Resolved Photoemission Spectroscopy by : K. E. Smith

Download or read book The Electronic Structure of Solids Studies Using Angle Resolved Photoemission Spectroscopy written by K. E. Smith and published by . This book was released on 1991 with total page 83 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Electronic Structure Studies of YBa[sub 2]Cu[sub 3]O[sub X](6. 2 [le] X [le] 6. 9) Using Angle Resolved Photoemission

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ISBN 13 :
Total Pages : 49 pages
Book Rating : 4.:/5 (727 download)

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Book Synopsis Electronic Structure Studies of YBa[sub 2]Cu[sub 3]O[sub X](6. 2 [le] X [le] 6. 9) Using Angle Resolved Photoemission by :

Download or read book Electronic Structure Studies of YBa[sub 2]Cu[sub 3]O[sub X](6. 2 [le] X [le] 6. 9) Using Angle Resolved Photoemission written by and published by . This book was released on 1992 with total page 49 pages. Available in PDF, EPUB and Kindle. Book excerpt: Using high resolution angle resolved photoemission, the electronic structure of YBa[sub 2]Cu[sub 3]O[sub x] is examined when oxygen stoichiometries are varied in the range 6.2 [le] [times] [le] 6.9. Detailed measurements of the Fermi surface for YBa[sub 2]Cu[sub 3]O[sub 6.9] are presented and are compared with predictions of band theory. In the metallic region of the phase diagram, changes in the Fermi surfaces are measured as a function of oxygen stoichiometry. The electronic structure is monitored as the oxide changes from a metal to a semiconductor with additional oxygen depletion. For intermediate stoichiometries, effects of oxygen vacancy ordering are considered. Unusual resonant effects observed at several photon energies are examined as oxygen content is varied.

The Electronic Structure of SrTiO3 from a Direct-transition Analysis of Angle-resolved Photoemission Data

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ISBN 13 :
Total Pages : 9 pages
Book Rating : 4.:/5 (314 download)

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Book Synopsis The Electronic Structure of SrTiO3 from a Direct-transition Analysis of Angle-resolved Photoemission Data by : N. B. Brookes

Download or read book The Electronic Structure of SrTiO3 from a Direct-transition Analysis of Angle-resolved Photoemission Data written by N. B. Brookes and published by . This book was released on 1985 with total page 9 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Electronic Structure of Low-dimensional Systems Analyzed by Scanning Tunnelling Microscope and Angle-resolved Photoemission Spectroscopy

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Total Pages : 184 pages
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Book Synopsis Electronic Structure of Low-dimensional Systems Analyzed by Scanning Tunnelling Microscope and Angle-resolved Photoemission Spectroscopy by :

Download or read book Electronic Structure of Low-dimensional Systems Analyzed by Scanning Tunnelling Microscope and Angle-resolved Photoemission Spectroscopy written by and published by . This book was released on 2002 with total page 184 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Angle-resolved Photoemission Studies of Two-dimensional Electron Systems

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Book Synopsis Angle-resolved Photoemission Studies of Two-dimensional Electron Systems by : Yang Liu

Download or read book Angle-resolved Photoemission Studies of Two-dimensional Electron Systems written by Yang Liu and published by . This book was released on 2011 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt: This dissertation examines the electronic properties of 2D electron systems, including ultrathin metallic films grown on semiconductor substrates and graphite/graphene layers. Both systems are (quasi) two-dimensional and are of particular interest due to their technological importance. The major experimental tool is angle-resolved photoemission spectroscopy, which can directly measure the spectral function of the quasiparticle. The study of ultrathin metallic films focuses on the substrate effect on the electronic structure of the film. Thin metallic films can support quantum well states, which are essentially electronic standing waves. Our work on Ag films grown on Ge(111) demonstrates that the incommensurate interface potential results in strong modifications to quantum well states. The observed electronic interference structures are attributable to the mixing of electronic standing waves by the Ag-Ge interface potential. The complex Fermi surface, as a result of this interface scattering, can affect the electronic transport properties. An even stronger modification of quantum well states can be observed when the metal films are grown on stepped substrates. More specifically, our study of corrugated Ag/Pb films grown on Si(557)-Au surface reveals multiple sets of quantum well states that are centered at the Brillouin zone boundaries corresponding to the step modulation. This indicates that the valence electrons form coherent grating cavity modes which are defined by the corrugation geometry. Graphitic materials, made of sheets of carbon atomic layers, have unusual electronic structures known as Dirac cones. Our photoemission measurements of graphite/graphene layers reveal unexpected gaps at normal emission, one at ~67 meV and another much weaker one at ~150 meV. The major gap features persist up to room temperature, and diminish with increasing emission angles. We show that these gaps arise from electronic coupling to out-of-plane and in-plane vibrational modes at the point, respectively, in accordance with conservation laws and selection rules governed by quantum mechanics. Our study suggests a new approach for characterizing phonons and electron-phonon coupling in solids.