Ultrafast terahertz probes of transient conducting and insulating phases in an electron–hole gas
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- 1 June 2003
- journal article
- Published by Springer Nature in Nature
- Vol. 423 (6941) , 734-738
- https://doi.org/10.1038/nature01676
Abstract
Many-body systems in nature exhibit complexity and self-organization arising from seemingly simple laws. For example, the long-range Coulomb interaction between electrical charges has a simple form, yet is responsible for a plethora of bound states in matter, ranging from the hydrogen atom to complex biochemical structures. Semiconductors form an ideal laboratory for studying many-body interactions of electronic quasiparticles among themselves and with lattice vibrations and light. Oppositely charged electron and hole quasiparticles can coexist in an ionized but correlated plasma, or form bound hydrogen-like pairs called excitons. The pathways between such states, however, remain elusive in near-visible optical experiments that detect a subset of excitons with vanishing centre-of-mass momenta. In contrast, transitions between internal exciton levels, which occur in the far-infrared at terahertz (1012 s(-1)) frequencies, are independent of this restriction, suggesting their use as a probe of electron-hole pair dynamics. Here we employ an ultrafast terahertz probe to investigate directly the dynamical interplay of optically-generated excitons and unbound electron-hole pairs in GaAs quantum wells. Our observations reveal an unexpected quasi-instantaneous excitonic enhancement, the formation of insulating excitons on a 100-ps timescale, and the conditions under which excitonic populations prevail.Keywords
This publication has 27 references indexed in Scilit:
- Exciton developmentsNature, 2002
- How many-particle interactions develop after ultrafast excitation of an electron–hole plasmaNature, 2001
- Exciton Formation in Semiconductors and the Influence of a Photonic EnvironmentPhysical Review Letters, 2001
- Many-body and correlation effects in semiconductorsNature, 2001
- Hidden symmetries in the energy levels of excitonic ‘artificial atoms’Nature, 2000
- Exciton Storage in Semiconductor Self-Assembled Quantum DotsScience, 1999
- Ultrafast Spectroscopy of Semiconductors and Semiconductor NanostructuresPublished by Springer Nature ,1999
- Terahertz Dynamics of Excitons in GaAs/AlGaAs Quantum WellsPhysical Review Letters, 1996
- Picosecond time-resolved far-infrared experiments on carriers and excitons in GaAs-AlGaAs multiple quantum wellsJournal of the Optical Society of America B, 1994
- Far-infrared absorption study of exciton ionization in germaniumPhysical Review B, 1976