Giant superfluorescent bursts from a semiconductor magneto-plasma
نویسندگان
چکیده
Superradiance—the cooperative decay of excited dipoles—has recently been discussed in a diverse range of contexts in which coherent coupling of constituent particles governs their cooperative dynamics: cavity quantum electrodynamics, quantum phase transitions and plasmonics. Here we observe intense, delayed bursts of coherent radiation from a photo-excited semiconductor and interpret it as superfluorescence, where macroscopic coherence spontaneously appears from initially incoherent electron–hole pairs. The coherence then decays superradiantly, with a concomitant abrupt decrease in population from full inversion to zero. This is the first observation of superfluorescence in a dense semiconductor plasma, where decoherence is much faster than radiative decay, a situation never encountered in atomic cases. Nonetheless, a many-body cooperative state of phased electron–hole ‘dipoles’ does emerge at high magnetic fields and low temperatures, producing giant superfluorescent pulses. The solid-state realization of superfluorescence resulted in unprecedented controllability, promising tunable sources of coherent pulses.
منابع مشابه
Generation of superuorescent bursts from a fully tunable semiconductor magneto-plasma
G. Timothy Noe II1, Ji-Hee Kim1, Jinho Lee2, Young-Dahl Jho3, Yongrui Wang4, Aleksander K. Wójcik4, Stephen A. McGill5, David H. Reitze2, Alexey A. Belyanin4, and Junichiro Kono1,∗ 1 Departments of Electrical and Computer Engineering and Physics and Astronomy, Rice University, Houston, Texas 77005, USA 2 Department of Physics, University of Florida, Gainesville, Florida 32611, USA 3 Department ...
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