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Theory of Bilayer Graphene Spectroscopy - Marcin Mucha-Kruczynski
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2012, ISBN: 9783642309359

ID: 9783642309359

Theory of Bilayer Graphene Spectroscopy: Hardback: Springer-Verlag Berlin and Heidelberg GmbH & Co. K: 9783642309359: 06 Sep 2012: This book 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. 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. Spectrum Analysis, Spectrochemistry, Mass Spec ..., , , , Theory of Bilayer Graphene Spectroscopy, Marcin Mucha-Kruczynski, 9783642309359, Springer-Verlag Berlin and Heidelberg GmbH & Co. KG, , , , ,, [PU: Springer, Berlin/Heidelberg/New York, NY]

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

Theory of Bilayer Graphene Spectroscopy - neues Buch

ISBN: 9783642309359

[ED: Buch], [PU: Springer-Verlag GmbH], Neuware - 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 2pi, 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., [SC: 0.00], Neuware, gewerbliches Angebot, 246x161x15 mm, [GW: 292g]

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Theory of Bilayer Graphene Spectroscopy - Marcin Mucha-Kruczynski
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
Marcin Mucha-Kruczynski:
Theory of Bilayer Graphene Spectroscopy - neues Buch

ISBN: 9783642309359

[ED: Buch], [PU: Springer-Verlag GmbH], Neuware - 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 2pi, 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., [SC: 0.00], Neuware, gewerbliches Angebot, FixedPrice, [GW: 292g]

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Theory of Bilayer Graphene Spectroscopy - Marcin Mucha-Kruczynski
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ISBN: 9783642309359

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Theory of Bilayer Graphene Spectroscopy Theory-of-Bilayer-Graphene-Spectroscopy~~Marcin-Mucha-Kruczynski Science/Tech>Chemistry>Chemistry Hardcover, Springer Berlin Heidelberg

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2012, ISBN: 3642309356

ID: A19906851

Gebundene Ausgabe Mikroskopie, Nanotechnologie, Technologie / Nanotechnologie, Spektroskopie, mit Schutzumschlag neu, [PU:Springer-Verlag GmbH]

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Theory of Bilayer Graphene Spectroscopy (Springer Theses)
Autor:

Marcin Mucha-Kruczynski

Titel:

Theory of Bilayer Graphene Spectroscopy (Springer Theses)

ISBN-Nummer:

3642309356

Detailangaben zum Buch - Theory of Bilayer Graphene Spectroscopy (Springer Theses)


EAN (ISBN-13): 9783642309359
ISBN (ISBN-10): 3642309356
Gebundene Ausgabe
Erscheinungsjahr: 2012
Herausgeber: Springer-Verlag GmbH
84 Seiten
Gewicht: 0,292 kg
Sprache: Englisch

Buch in der Datenbank seit 18.10.2008 16:13:57
Buch zuletzt gefunden am 02.12.2016 10:41:29
ISBN/EAN: 3642309356

ISBN - alternative Schreibweisen:
3-642-30935-6, 978-3-642-30935-9

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