Direkt zum Inhalt

Borsch, M. ; Schmid, Christoph P. ; Weigl, Leonard ; Schlauderer, Stefan ; Hofmann, Niklas ; Lange, Christoph ; Steiner, J. T. ; Koch, S. W. ; Huber, Rupert ; Kira, M.

Super-resolution lightwave tomography of electronic bands in quantum materials

Borsch, M. , Schmid, Christoph P., Weigl, Leonard, Schlauderer, Stefan, Hofmann, Niklas, Lange, Christoph , Steiner, J. T., Koch, S. W., Huber, Rupert and Kira, M. (2020) Super-resolution lightwave tomography of electronic bands in quantum materials. Science (370), pp. 1204-1207.

Date of publication of this fulltext: 14 Jan 2021 08:36
Article
DOI to cite this document: 10.5283/epub.44391


Abstract

Searching for quantum functionalities requires access to the electronic structure, constituting the foundation of exquisite spin-valley-electronic, topological, and many-body effects. All-optical band-structure reconstruction could directly connect electronic structure with the coveted quantum phenomena if strong lightwaves transported localized electrons within preselected bands. Here, we ...

Searching for quantum functionalities requires access to the electronic structure, constituting the foundation of exquisite spin-valley-electronic, topological, and many-body effects. All-optical band-structure reconstruction could directly connect electronic structure with the coveted quantum phenomena if strong lightwaves transported localized electrons within preselected bands. Here, we demonstrate that harmonic sideband (HSB) generation in monolayer tungsten diselenide creates distinct electronic interference combs in momentum space. Locating these momentum combs in spectroscopy enables super-resolution tomography of key band-structure details in situ. We experimentally tuned the optical-driver frequency by a full octave and show that the predicted super-resolution manifests in a critical intensity and frequency dependence of HSBs. Our concept offers a practical, all-optical, fully three-dimensional tomography of electronic structure even in microscopically small quantum materials, band by band.



Involved Institutions


Linked items

  • [img]
    Preview
    Borsch, M. , Schmid, Christoph P., Weigl, Leonard, Schlauderer, Stefan, Hofmann, Niklas, Lange, Christoph , Steiner, J. T., Koch, S. W., Huber, Rupert and Kira, M. (2020) Super-resolution lightwave tomography of electronic bands in quantum materials. Science (370), pp. 1204-1207. [Currently displayed]

Details

Item typeArticle
Journal or Publication TitleScience
Publisher:AMER ASSOC ADVANCEMENT SCIENCE
Place of Publication:WASHINGTON
Number of Issue or Book Chapter:370
Page Range:pp. 1204-1207
Date4 December 2020
InstitutionsPhysics > Institute of Experimental and Applied Physics
Physics > Institute of Experimental and Applied Physics > Chair Professor Huber > Group Rupert Huber
Identification Number
ValueType
10.1126/science.abe2112DOI
Keywords;
Dewey Decimal Classification500 Science > 530 Physics
StatusPublished
RefereedYes, this version has been refereed
Created at the University of RegensburgYes
URN of the UB Regensburgurn:nbn:de:bvb:355-epub-443915
Item ID44391

Export bibliographical data

Owner only: item control page

nach oben