Plasmonics and Light-Matter Interactions in Two-Dimensional Materials and in Metal Nanostructures: Classical and Quantum Considerations, Gonзalves Paulo Andrй Dias
Автор: Witold A. Jacak Название: Quantum Nano-Plasmonics ISBN: 1108478395 ISBN-13(EAN): 9781108478397 Издательство: Cambridge Academ Рейтинг: Цена: 19800.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This step-by-step approach makes quantum theory of plasmons accessible to readers without specialized training in theory. Suitable for postgraduate students in the field of plasmonics, opto-electronics and photonics, and for researchers active in the field of photo-voltaics, opto-electronics, nano-plasmonics and nano-photonics.
Автор: Goncalves Paulo Andre Dias & Peres Nuno Miguel Mac Название: Introduction To Graphene Plasmonics, An ISBN: 9814749982 ISBN-13(EAN): 9789814749985 Издательство: World Scientific Publishing Рейтинг: Цена: 8554.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The book aims at the graduate student entering the field of graphene plasmonics.
Автор: Goncalves Paulo Andre Dias & Peres Nuno Miguel Mac Название: Introduction To Graphene Plasmonics, An ISBN: 9814749974 ISBN-13(EAN): 9789814749978 Издательство: World Scientific Publishing Рейтинг: Цена: 22968.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The book aims at the graduate student entering the field of graphene plasmonics.
Название: 1-dimensional metal oxide nanostructures ISBN: 1138577529 ISBN-13(EAN): 9781138577527 Издательство: Taylor&Francis Рейтинг: Цена: 28327.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This book covers recent developments in synthesis and growth process of 1-D metal oxide nanosturctures with a focus on semi-templated method of oxidation origin.
Chapter 2 - Terahertz Radiators Based on Silicon Carbide Avalanche Transit Time Sources - Part I: Large-Signal Characteristics (Dr. Aritra Acharyya)
Chapter 3 - Terahertz Radiators Based on Silicon Carbide Avalanche Transit Time Sources - Part II: Avalanche Noise Characteristics (Dr. Aritra Acharyya)
Chapter 4 - RF Performance of Ultra Wide Band Gap HEMTs (Dr. T R Lenka)
Chapter 5 - Potentiality of Impact Avalanche Transit Time diode as Terahertz Source based on Group-IV and III-V semiconducting materials (Girish Chandra Ghivela)
Chapter 6 - Analysis of InN based Surrounded gate tunnel field effect transistor for terahertz applications (Dr. Nitai Paitya)
Chapter 7 - Thermoelectric Power in Heavily Doped Nano-Structures In The Presence of Terahertz Radiation (K P Ghatak)
Chapter 8 - Heterostructure Devices for THz Signal Recognition (Dr. Manas Chand)
Chapter 9 - Data transmission with Terahertz Communication Systems (Dr. Sudipta Das)
Chapter 10 - Advances in Terahertz Imaging (Dr. Arijit Saha)
Chapter 11 - Terahertz emission mechanisms in III-V semiconductors: The influence of isoelectronic dopants (Rajeev N. Kini and C. P. Vaisakh)
Chapter 12 - Group III - Nitride and other semiconductor for terahertz detector(Bijit Choudhuri and Aniruddha Mondal).
Описание: This graduate textbook introduces the com-putational techniques to study ultra-fast quantum dynamics of matter exposed to strong laser fields. Coverage includes methods to propagate wavefunctions according to the time dependent Schrodinger, Klein-Gordon or Dirac equation, the calculation of typical observables, time-dependent density functional theory, multi configurational time-dependent Hartree-Fock, time-dependent configuration interaction singles, the strong-field approximation, and the microscopic particle-in-cell approach. Contents How to propagate a wavefunction? Calculation of typical strong-field observables Time-dependent relativistic wave equations: Numerics of the Dirac and the Klein-Gordon equation Time-dependent density functional theory The multiconfiguration time-dependent Hartree-Fock method Time-dependent configuration interaction singles Strong-field approximation and quantum orbits Microscopic particle-in-cell approach
Описание: This thesis presents optical methods to split the energy levels of electronic valleys in transition-metal dichalcogenides (TMDs) by means of coherent light-matter interactions. In particular, by using off-resonance circularly polarized light at small detuning, one can tune the energy level of one valley through the optical Stark effect.
Описание: This thesis presents optical methods to split the energy levels of electronic valleys in transition-metal dichalcogenides (TMDs) by means of coherent light-matter interactions. The electronic valleys found in monolayer TMDs such as MoS2, WS2, and WSe2 are among the many novel properties exhibited by semiconductors when thinned down to a few atomic layers, and have have been proposed as a new way to carry information in next generation devices (so-called valleytronics). These valleys are, however, normally locked in the same energy level, which limits their potential use for applications. The author describes experiments performed with a pump-probe technique using transient absorption spectroscopy on MoS2 and WS2. It is demonstrated that hybridizing the electronic valleys with light allows one to optically tune their energy levels in a controllable valley-selective manner. In particular, by using off-resonance circularly polarized light at small detuning, one can tune the energy level of one valley through the optical Stark effect. Also presented within are observations, at larger detuning, of a separate contribution from the so-called Bloch--Siegert effect, a delicate phenomenon that has eluded direct observation in solids. The two effects obey opposite selection rules, enabling one to separate the two effects at two different valleys.
Автор: Alexander V. Kolobov; Junji Tominaga Название: Two-Dimensional Transition-Metal Dichalcogenides ISBN: 331981043X ISBN-13(EAN): 9783319810430 Издательство: Springer Рейтинг: Цена: 41925.00 р. Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:
Introduction.- Chemistry of Transition Metal Dichalcogenides.- Brief Review of Bulk TMDCs: Structure and Properties.- Fabrication of 2D TMDC.- Structure of Monolayer and Few-Layer TMDCs.- Band Structure of 2D TMDCs.- Raman Scattering Spectroscopy of 2D TMDCs.- Photoluminescence of 2D TMDC.- Excitons in 2D TMDCs.- Magnetism of 2D TMDCs.- Spin-Valley Coupling in 2D TMDCs.- Miscellaneous Phenomena.- Functionalization of 2D TMDCs.- TMDC Heterostructures.- Applications of 2D TMDCs.
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