Coherent light-matter interactions in monolayer transition-metal dichalcogenides /

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Bibliographic Details
Author / Creator:Sie, Edbert Jarvis.
Imprint:Cham : Springer, ©2018.
Description:1 online resource (142 pages)
Language:English
Series:Springer Theses
Springer theses.
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11542365
Hidden Bibliographic Details
ISBN:9783319695549
3319695541
9783319695532
3319695533
Digital file characteristics:text file PDF
Notes:7.7.1 Microscopic Many-Body Computation.
Includes bibliographical references.
Print version record.
Summary: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 present in monolayer TMDs such as MoS2, WS2, and WSe2 are among the many novel properties exhibited by semiconductors 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 experiment performed with a pump-probe technique using a 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.
Other form:Print version: Sie, Edbert Jarvis. Coherent Light-Matter Interactions in Monolayer Transition-Metal Dichalcogenides. Cham : Springer International Publishing, ©2017 9783319695532
Standard no.:10.1007/978-3-319-69554-9