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Titlebook: Coherent Light-Matter Interactions in Monolayer Transition-Metal Dichalcogenides; Edbert Jarvis Sie Book 2018 Springer International Publi

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Book 2018light-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
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2190-5053 d of valleytronics.Offers insights into the novel optical anThis 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, WS
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https://doi.org/10.1007/978-3-658-12948-4d electrons, one can obtain the energy-momentum dispersion relation inside the material. ARPES has made a tremendous impact in condensed matter physics by helping to understand the physics of materials including topological insulators, strongly correlated materials, and two-dimensional materials such as graphene and TMDs.
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,Die Flutkatastrophe als „Normalunfall“,posite valley, which is normally forbidden by the exciton selection rules but now made accessible through the intervalley biexcitons. These findings reveal the critical, but hitherto neglected, role of biexcitons to couple the two seemingly independent valleys and to enhance the optical control in valleytronics.
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Schriften zum europäischen Managementon interaction that mimics the Lennard-Jones potential between atoms. Our experiment demonstrates a strong analogy between excitons and atoms with respect to inter-particle interaction, which holds promise to pursue the predicted liquid and crystalline phases of excitons in two-dimensional materials.
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Time-Resolved Absorption Spectroscopy,rption setup. In later sections, we will discuss in more details about (1) laser amplifier, (2) optical parametric amplifier, and (3) white light continuum generation. Finally, we will discuss about the data analysis based on the optical physics of monolayer materials on a transparent substrate.
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Lennard-Jones-Like Potential of 2D Excitons in Monolayer WS2,on interaction that mimics the Lennard-Jones potential between atoms. Our experiment demonstrates a strong analogy between excitons and atoms with respect to inter-particle interaction, which holds promise to pursue the predicted liquid and crystalline phases of excitons in two-dimensional materials.
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