Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Ultrafast dynamic stark shift of an exciton-polariton condensate

View through CrossRef
Abstract Time-dependent spatial modulation of a quantum condensate plays a key role in the investigation of the dynamics of collective coherent systems. Cold-atom condensates were already manipulated into forming solitons, vortices and optical lattices via the dynamic Stark effect. In the solid-state framework, semiconductor microcavity exciton-polaritons present an excellent platform for observing nonequilibrium condensate dynamics. Furthermore, the dynamic manipulation of exciton-polariton condensates offers numerous potential implementations in all-optical logic devices. We report the first observation of the energy modulation of an exciton-polariton condensate via the dynamic Stark effect. A Stark pulse is employed to induce a transient, coherence-preserving blueshift in the energy of the condensate of femtosecond-scale duration. A novel approach is presented for discerning the Stark effect in a condensate from the uncondensed case according to distinctive features in differential reflectance spectra, including spectro-temporal oscillations enabling to detect the buildup of coherence. The ultrafast and non-invasive modulation of the exciton-polariton condensate demonstrated here opens new research avenues of nonequilibrium physics of solid-state condensates as well as opportunities for polariton-based elements in both classical and quantum information technologies.
Title: Ultrafast dynamic stark shift of an exciton-polariton condensate
Description:
Abstract Time-dependent spatial modulation of a quantum condensate plays a key role in the investigation of the dynamics of collective coherent systems.
Cold-atom condensates were already manipulated into forming solitons, vortices and optical lattices via the dynamic Stark effect.
In the solid-state framework, semiconductor microcavity exciton-polaritons present an excellent platform for observing nonequilibrium condensate dynamics.
Furthermore, the dynamic manipulation of exciton-polariton condensates offers numerous potential implementations in all-optical logic devices.
We report the first observation of the energy modulation of an exciton-polariton condensate via the dynamic Stark effect.
A Stark pulse is employed to induce a transient, coherence-preserving blueshift in the energy of the condensate of femtosecond-scale duration.
A novel approach is presented for discerning the Stark effect in a condensate from the uncondensed case according to distinctive features in differential reflectance spectra, including spectro-temporal oscillations enabling to detect the buildup of coherence.
The ultrafast and non-invasive modulation of the exciton-polariton condensate demonstrated here opens new research avenues of nonequilibrium physics of solid-state condensates as well as opportunities for polariton-based elements in both classical and quantum information technologies.

Related Results

Analytic Rate Theory of Polariton Relaxation that Explains Long Polariton Lifetime
Analytic Rate Theory of Polariton Relaxation that Explains Long Polariton Lifetime
Hybridization of a molecular exciton with a quantized photon creates a polariton. Despite extensive experimental investigations, the apparent lifetime of the exciton-polariton is ...
Analytic Rate Theory of Polariton Relaxation that Explains Long Polariton Lifetime
Analytic Rate Theory of Polariton Relaxation that Explains Long Polariton Lifetime
Hybridization of a molecular exciton with a quantized photon inside an optical cavity creates a polariton. Despite extensive experimental investigations, the apparent lifetime of t...
Exciton dynamics in conjugated polymer systems
Exciton dynamics in conjugated polymer systems
Exciton dynamics in π-conjugated polymers systems encompass multiple time and length scales. Ultrafast femtosecond processes are intrachain and involve a quantum mechanical correla...
Block 61 Condensate Decline Management Strategy
Block 61 Condensate Decline Management Strategy
Abstract Block 61 is gas field located in Southwest of Oman and is being operated by BP. Field has been on production under Exploration and Production Sharing Agreem...
Enhanced Gas-Condensate Recovery in Complex Reservoirs: Pilots and Models
Enhanced Gas-Condensate Recovery in Complex Reservoirs: Pilots and Models
Abstract Gas injection in gas-condensate reservoirs requires reservoir studies with cumbersome and complex simulations of flow and of phase behaviour for multipha...
Generation and modulation of shock waves in two-dimensional polariton condensates
Generation and modulation of shock waves in two-dimensional polariton condensates
Due to the ability of exciton-polariton condensates formed in semiconductor microcavities to be achieved at room temperature and their characteristics such as non-equilibrium and s...
Dynamics of A-exciton and spin relaxation in WS<sub>2</sub> and WSe<sub>2</sub> monolayer
Dynamics of A-exciton and spin relaxation in WS<sub>2</sub> and WSe<sub>2</sub> monolayer
Two-dimensional transitional metal dichalcogenide (2D TMD) emerges as a good candidate material in optoelectronics and valleytronics due to its particular exciton effect and strong...
Boosting Condensate Recoveries of a Mature Retrograde Gas-Condensate Field in Pakistan
Boosting Condensate Recoveries of a Mature Retrograde Gas-Condensate Field in Pakistan
Abstract One of the most challenging part of managing a Gas-Condensate reservoir is to reduce Condensate Banking and its damaging impacts on the overall recovery. Se...

Back to Top