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Theory of Bilayer Graphene Spectroscopy
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Theory of Bilayer Graphene Spectroscopy - new book

2012, ISBN: 9783642309366

This thesis presents the theory of three key elements of optical spectroscopy of the electronic excitations in bilayer graphene: angle-resolved photoemission spectroscopy (ARPES), visible… More...

Nr. 33785147. Shipping costs:, Sofort per Download lieferbar, DE. (EUR 0.00)
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Theory of Bilayer Graphene Spectroscopy
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Theory of Bilayer Graphene Spectroscopy - new book

ISBN: 9783642309366

This thesis presents the theory of three key elements of optical spectroscopy of the electronic excitations in bilayer graphene: angle-resolved photoemission spectroscopy (ARPES), visible… More...

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Theory of Bilayer Graphene Spectroscopy - Marcin Mucha-Kruczynski
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Marcin Mucha-Kruczynski:
Theory of Bilayer Graphene Spectroscopy - new book

ISBN: 9783642309366

Theory of Bilayer Graphene Spectroscopy: ab 96.49 € eBooks > Sachthemen & Ratgeber > Technik Springer-Verlag GmbH, Springer-Verlag GmbH

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Theory of Bilayer Graphene Spectroscopy - Marcin Mucha-Kruczy?ski
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Marcin Mucha-Kruczy?ski:
Theory of Bilayer Graphene Spectroscopy - First edition

2012, ISBN: 9783642309366

eBooks, eBook Download (PDF), Auflage, [PU: Springer-Verlag], [ED: 1], Springer-Verlag, 2012

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Theory of Bilayer Graphene Spectroscopy - Marcin Mucha-Kruczy?ski
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Marcin Mucha-Kruczy?ski:
Theory of Bilayer Graphene Spectroscopy - new book

2012, ISBN: 9783642309366

eBooks, eBook Download (PDF), 2013, [PU: Springer Berlin], Springer Berlin, 2012

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Details of the book - Theory of Bilayer Graphene Spectroscopy


EAN (ISBN-13): 9783642309366
ISBN (ISBN-10): 3642309364
Publishing year: 2012
Publisher: Springer-Verlag
84 Pages
Language: eng/Englisch

Book in our database since 2012-04-18T04:51:11+01:00 (London)
Detail page last modified on 2024-04-07T05:51:59+01:00 (London)
ISBN/EAN: 9783642309366

ISBN - alternate spelling:
3-642-30936-4, 978-3-642-30936-6
Alternate spelling and related search-keywords:
Book author: mucha, much, marci
Book title: graphene, ski


Information from Publisher

Author: Marcin Mucha-Kruczyński
Title: Springer Theses; Theory of Bilayer Graphene Spectroscopy
Publisher: Springer; Springer Berlin
86 Pages
Publishing year: 2012-09-06
Berlin; Heidelberg; DE
Language: English
96,29 € (DE)
99,00 € (AT)
118,00 CHF (CH)
Available
X, 86 p.

EA; E107; eBook; Nonbooks, PBS / Chemie/Physikalische Chemie; Spektroskopie, Spektrochemie, Massenspektrometrie; Verstehen; Bilayer Graphene; Chiral Electron States in Graphene; Electron-hole Excitations in Graphene; Electronic Structure of Bilayer Graphene; Graphene Interlayer Asymmetry; Graphene Spectroscopy; Graphene Tight-binding; Studying BLG; B; Spectroscopy; Surfaces, Interfaces and Thin Film; Surface and Interface and Thin Film; Nanophysics; Nanotechnology; Physics and Astronomy; Materialwissenschaft; Physik der kondensierten Materie (Flüssigkeits- und Festkörperphysik); Nanowissenschaften; Nanotechnologie; BC

This thesis presents the theory of three key elements of optical spectroscopy of the electronic excitations in bilayer graphene: angle-resolved photoemission spectroscopy (ARPES), visible range Raman spectroscopy, and far-infrared (FIR) magneto-spectroscopy. Bilayer graphene (BLG) is an atomic two-dimensional crystal consisting of two honeycomb monolayers of carbon, arranged according to Bernal stacking. The unperturbed BLG has a unique band structure, which features chiral states of electrons with a characteristic Berry phase of 2$\\pi$, and it has versatile properties which can be controlled by an externally applied transverse electric field and strain. It is shown in this work how ARPES of BLG can be used to obtain direct information about the chirality of electron states in the crystal. The author goes on to describe the influence of the interlayer asymmetry, which opens a gap in BLG, on ARPES and on FIR spectra in a strong magnetic field. Finally, he presents a comprehensive theory of inelastic Raman scattering resulting in the electron-hole excitations in bilayer graphene, at zero and quantizing magnetic fields. This predicts their polarization properties and peculiar selection rules in terms of the inter-Landau-level transitions.
Nominated as an outstanding contribution by the University of Lancaster Investigates a novel material at the focus of much research interest Valuable theoretical results show what different spectroscopic techniques can reveal about graphene Includes supplementary material: sn.pub/extras

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