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Coherent Light-Matter Interactions in Monolayer Transition-Metal Dichalcogenides


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Produktinformationen
cover
cover
Artikel-Nr.:
     5667A-9783319887999
Hersteller:
     Springer Verlag
Herst.-Nr.:
     9783319887999
EAN/GTIN:
     9783319887999
Suchbegriffe:
Physik- und Astronomiebücher - engl...
Physik-, Astronomiebücher
Physik-Bücher
physik-, astronomiebücher
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.
Weitere Informationen:
Author:
Edbert Jarvis Sie
Verlag:
Springer International Publishing
Sprache:
eng
Weitere Suchbegriffe: time-resolved absorption spectroscopy; angle-resolved absorption spectroscopy; electronic valleys; valleytronics; Bloch-Siegert effect; optical Stark effect; XUV spectroscopy, time-resolved absorption spectroscopy, angle-resolved absorption spectroscopy, coherent light-matter interactions, electronic valleys, valleytronics, Bloch-Siegert effect, optical Stark effect, XUV spectroscopy
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