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Title: Valley-selective optical Stark effect of exciton-polaritons in a monolayer semiconductor

Abstract

Selective breaking of degenerate energy levels is a well-known tool for coherent manipulation of spin states. Though most simply achieved with magnetic fields, polarization-sensitive optical methods provide high-speed alternatives. Exploiting the optical selection rules of transition metal dichalcogenide monolayers, the optical Stark effect allows for ultrafast manipulation of valley-coherent excitons. Compared to excitons in these materials, microcavity exciton-polaritons offer a promising alternative for valley manipulation, with longer lifetimes, enhanced valley coherence, and operation across wider temperature ranges. Here, we show valley-selective control of polariton energies in WS2 using the optical Stark effect, extending coherent valley manipulation to the hybrid light-matter regime. Ultrafast pump-probe measurements reveal polariton spectra with strong polarization contrast originating from valley-selective energy shifts. This demonstration of valley degeneracy breaking at picosecond timescales establishes a method for coherent control of valley phenomena in exciton-polaritons.

Authors:
 [1];  [1];  [2];  [3]; ORCiD logo [4];  [2]; ORCiD logo [5]; ORCiD logo [6]; ORCiD logo [7]; ORCiD logo [8]
  1. Northwestern Univ., Evanston, IL (United States). Applied Physics Program
  2. Northwestern Univ., Evanston, IL (United States). Dept. of Physics and Astronomy
  3. Northwestern Univ., Evanston, IL (United States). Dept. of Chemistry and the Materials Research Center
  4. Northwestern Univ., Evanston, IL (United States). The Materials Research Center. Dept. of Materials Science and Engineering, International Inst. of Nanotechnology
  5. Northwestern Univ., Evanston, IL (United States). Dept. of Chemistry and the Materials Research Center, The Materials Research Center. Dept. of Materials Science and Engineering
  6. Northwestern Univ., Evanston, IL (United States). The Materials Research Center. Dept. of Materials Science and Engineering, International Inst. of Nanotechnology, NUANCE Center
  7. Northwestern Univ., Evanston, IL (United States). Applied Physics Program, Dept. of Chemistry and the Materials Research Center, The Materials Research Center. Dept. of Materials Science and Engineering, Dept. of Electrical and Computer Engineering
  8. Northwestern Univ., Evanston, IL (United States). Applied Physics Program, Dept. of Physics and Astronomy
Publication Date:
Research Org.:
Northwestern Univ., Evanston, IL (United States)
Sponsoring Org.:
USDOE Office of Science (SC), Basic Energy Sciences (BES). Materials Sciences & Engineering Division
OSTI Identifier:
1816670
Grant/Contract Number:  
SC0012130
Resource Type:
Accepted Manuscript
Journal Name:
Nature Communications
Additional Journal Information:
Journal Volume: 12; Journal Issue: 1; Journal ID: ISSN 2041-1723
Publisher:
Nature Publishing Group
Country of Publication:
United States
Language:
English
Subject:
36 MATERIALS SCIENCE; 75 CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY

Citation Formats

LaMountain, Trevor, Nelson, Jovan, Lenferink, Erik J., Amsterdam, Samuel H., Murthy, Akshay A., Zeng, Hongfei, Marks, Tobin J., Dravid, Vinayak P., Hersam, Mark C., and Stern, Nathaniel P. Valley-selective optical Stark effect of exciton-polaritons in a monolayer semiconductor. United States: N. p., 2021. Web. doi:10.1038/s41467-021-24764-8.
LaMountain, Trevor, Nelson, Jovan, Lenferink, Erik J., Amsterdam, Samuel H., Murthy, Akshay A., Zeng, Hongfei, Marks, Tobin J., Dravid, Vinayak P., Hersam, Mark C., & Stern, Nathaniel P. Valley-selective optical Stark effect of exciton-polaritons in a monolayer semiconductor. United States. https://doi.org/10.1038/s41467-021-24764-8
LaMountain, Trevor, Nelson, Jovan, Lenferink, Erik J., Amsterdam, Samuel H., Murthy, Akshay A., Zeng, Hongfei, Marks, Tobin J., Dravid, Vinayak P., Hersam, Mark C., and Stern, Nathaniel P. Mon . "Valley-selective optical Stark effect of exciton-polaritons in a monolayer semiconductor". United States. https://doi.org/10.1038/s41467-021-24764-8. https://www.osti.gov/servlets/purl/1816670.
@article{osti_1816670,
title = {Valley-selective optical Stark effect of exciton-polaritons in a monolayer semiconductor},
author = {LaMountain, Trevor and Nelson, Jovan and Lenferink, Erik J. and Amsterdam, Samuel H. and Murthy, Akshay A. and Zeng, Hongfei and Marks, Tobin J. and Dravid, Vinayak P. and Hersam, Mark C. and Stern, Nathaniel P.},
abstractNote = {Selective breaking of degenerate energy levels is a well-known tool for coherent manipulation of spin states. Though most simply achieved with magnetic fields, polarization-sensitive optical methods provide high-speed alternatives. Exploiting the optical selection rules of transition metal dichalcogenide monolayers, the optical Stark effect allows for ultrafast manipulation of valley-coherent excitons. Compared to excitons in these materials, microcavity exciton-polaritons offer a promising alternative for valley manipulation, with longer lifetimes, enhanced valley coherence, and operation across wider temperature ranges. Here, we show valley-selective control of polariton energies in WS2 using the optical Stark effect, extending coherent valley manipulation to the hybrid light-matter regime. Ultrafast pump-probe measurements reveal polariton spectra with strong polarization contrast originating from valley-selective energy shifts. This demonstration of valley degeneracy breaking at picosecond timescales establishes a method for coherent control of valley phenomena in exciton-polaritons.},
doi = {10.1038/s41467-021-24764-8},
journal = {Nature Communications},
number = 1,
volume = 12,
place = {United States},
year = {Mon Jul 26 00:00:00 EDT 2021},
month = {Mon Jul 26 00:00:00 EDT 2021}
}

Works referenced in this record:

Optical valley Hall effect for highly valley-coherent exciton-polaritons in an atomically thin semiconductor
journal, July 2019


Many-Body Effects in Valleytronics: Direct Measurement of Valley Lifetimes in Single-Layer MoS 2
journal, December 2013

  • Mai, Cong; Barrette, Andrew; Yu, Yifei
  • Nano Letters, Vol. 14, Issue 1
  • DOI: 10.1021/nl403742j

Exciton diffusion in WSe 2 monolayers embedded in a van der Waals heterostructure
journal, April 2018

  • Cadiz, F.; Robert, C.; Courtade, E.
  • Applied Physics Letters, Vol. 112, Issue 15
  • DOI: 10.1063/1.5026478

Exciton Diffusion and Halo Effects in Monolayer Semiconductors
journal, May 2018


Ultrafast Manipulation of a Strongly Coupled Light–Matter System by a Giant ac Stark Effect
journal, November 2019


Control of Coherently Coupled Exciton Polaritons in Monolayer Tungsten Disulphide
journal, July 2017


Spin and pseudospins in layered transition metal dichalcogenides
journal, April 2014

  • Xu, Xiaodong; Yao, Wang; Xiao, Di
  • Nature Physics, Vol. 10, Issue 5
  • DOI: 10.1038/nphys2942

Strongly Driven Semiconductor Microcavities: From the Polariton Doublet to an ac Stark Triplet
journal, May 1998


Spectroscopic Signatures of Quantum Many-Body Correlations in Polariton Microcavities
journal, December 2019


Observation of Intervalley Biexcitonic Optical Stark Effect in Monolayer WS 2
journal, November 2016


Valley-polarized exciton–polaritons in a monolayer semiconductor
journal, June 2017

  • Chen, Yen-Jung; Cain, Jeffrey D.; Stanev, Teodor K.
  • Nature Photonics, Vol. 11, Issue 7
  • DOI: 10.1038/nphoton.2017.86

Anomalous dispersion of microcavity trion-polaritons
journal, October 2017

  • Dhara, S.; Chakraborty, C.; Goodfellow, K. M.
  • Nature Physics, Vol. 14, Issue 2
  • DOI: 10.1038/nphys4303

Complete quantum control of a single quantum dot spin using ultrafast optical pulses
journal, November 2008

  • Press, David; Ladd, Thaddeus D.; Zhang, Bingyang
  • Nature, Vol. 456, Issue 7219
  • DOI: 10.1038/nature07530

Optical manipulation of valley pseudospin
journal, September 2016

  • Ye, Ziliang; Sun, Dezheng; Heinz, Tony F.
  • Nature Physics, Vol. 13, Issue 1
  • DOI: 10.1038/nphys3891

Dynamic Stark Effect in Strongly Coupled Microcavity Exciton Polaritons
journal, July 2012


Valley-selective optical Stark effect in monolayer WS2
journal, December 2014

  • Sie, Edbert J.; McIver, James W.; Lee, Yi-Hsien
  • Nature Materials, Vol. 14, Issue 3
  • DOI: 10.1038/nmat4156

Picosecond Coherent Optical Manipulation of a Single Electron Spin in a Quantum Dot
journal, April 2008


Valley-selective optical Stark effect probed by Kerr rotation
journal, January 2018


Resonant optical Stark effect in monolayer WS2
journal, December 2019

  • Cunningham, Paul D.; Hanbicki, Aubrey T.; Reinecke, Thomas L.
  • Nature Communications, Vol. 10, Issue 1
  • DOI: 10.1038/s41467-019-13501-x

Room-temperature valley coherence in a polaritonic system
journal, April 2019


Optical valley Hall effect based on transitional metal dichalcogenide cavity polaritons
journal, October 2017


Large, valley-exclusive Bloch-Siegert shift in monolayer WS 2
journal, March 2017


Valley-dependent exciton fine structure and Autler–Townes doublets from Berry phases in monolayer MoSe2
journal, August 2019


Observation of the optical spin Hall effect
journal, July 2007

  • Leyder, C.; Romanelli, M.; Karr, J. Ph.
  • Nature Physics, Vol. 3, Issue 9
  • DOI: 10.1038/nphys676

Ultimate fast optical switching of a planar microcavity in the telecom wavelength range
journal, April 2011

  • Ctistis, Georgios; Yuce, Emre; Hartsuiker, Alex
  • Applied Physics Letters, Vol. 98, Issue 16
  • DOI: 10.1063/1.3580615

Exciton-dominated Dielectric Function of Atomically Thin MoS2 Films
journal, November 2015

  • Yu, Yiling; Yu, Yifei; Cai, Yongqing
  • Scientific Reports, Vol. 5, Issue 1
  • DOI: 10.1038/srep16996

Exciton valley dynamics probed by Kerr rotation in WSe 2 monolayers
journal, October 2014


Ultrafast generation of pseudo-magnetic field for valley excitons in WSe 2 monolayers
journal, December 2014


Manipulation of room-temperature valley-coherent exciton-polaritons in atomically thin crystals by real and artificial magnetic fields
journal, June 2020


Exciton–polariton spin switches
journal, April 2010


Biexcitonic optical Stark effects in monolayer molybdenum diselenide
journal, July 2018


Observation of macroscopic valley-polarized monolayer exciton-polaritons at room temperature
journal, December 2017


Ultrafast control of strong light–matter coupling
journal, January 2018

  • Lange, Christoph; Cancellieri, Emiliano; Panna, Dmitry
  • New Journal of Physics, Vol. 20, Issue 1
  • DOI: 10.1088/1367-2630/aa9fd0

Optical control of room-temperature valley polaritons
journal, July 2017


Valley-addressable polaritons in atomically thin semiconductors
journal, July 2017


Valley coherent exciton-polaritons in a monolayer semiconductor
journal, November 2018