Cavity Floquet engineering

Author:

Zhou LingxiaoORCID,Liu Bin,Liu Yuze,Lu YangORCID,Li QiuyangORCID,Xie Xin,Lydick NathanialORCID,Hao Ruofan,Liu Chenxi,Watanabe KenjiORCID,Taniguchi TakashiORCID,Chou Yu-Hsun,Forrest Stephen R.ORCID,Deng HuiORCID

Abstract

AbstractFloquet engineering is a promising tool to manipulate quantum systems coherently. A well-known example is the optical Stark effect, which has been used for optical trapping of atoms and breaking time-reversal symmetry in solids. However, as a coherent nonlinear optical effect, Floquet engineering typically requires high field intensities obtained in ultrafast pulses, severely limiting its use. Here, we demonstrate using cavity engineering of the vacuum modes to achieve orders-of-magnitude enhancement of the effective Floquet field, enabling Floquet effects at an extremely low fluence of 450 photons/μm2. At higher fluences, the cavity-enhanced Floquet effects lead to 50 meV spin and valley splitting of WSe2 excitons, corresponding to an enormous time-reversal breaking, non-Maxwellian magnetic field of over 200 T. Utilizing such an optically controlled effective magnetic field, we demonstrate an ultrafast, picojoule chirality XOR gate. These results suggest that cavity-enhanced Floquet engineering may enable the creation of steady-state or quasi-equilibrium Floquet bands, strongly non-perturbative modifications of materials beyond the reach of other means, and application of Floquet engineering to a wide range of materials and applications.

Funder

United States Department of Defense | United States Army | U.S. Army Research, Development and Engineering Command | Army Research Office

United States Department of Defense | United States Air Force | AFMC | Air Force Office of Scientific Research

National Science Foundation

United States Department of Defense | United States Navy | Office of Naval Research

Gordon and Betty Moore Foundation

MEXT | Japan Society for the Promotion of Science

Publisher

Springer Science and Business Media LLC

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