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Magnetic-Field-Assisted Terahertz Quantum Cascade Laser Operating up to 225 KAdvances in semiconductor bandgap engineering have resulted in the recent development of the terahertz quantum cascade laser1. These compact optoelectronic devices now operate in the frequency range 1.2-5 THz, although cryogenic cooling is still required2.3. Further progress towards the realization of devices operating at higher temperatures and emitting at longer wavelengths (sub-terahertz quantum cascade lasers) is difficult because it requires maintaining a population inversion between closely spaced electronic sub-bands (1 THz approx. equals 4 meV). Here, we demonstrate a magnetic-field-assisted quantum cascade laser based on the resonant-phonon design. By applying appropriate electrical bias and strong magnetic fields above 16 T, it is possible to achieve laser emission from a single device over a wide range of frequencies (0.68-3.33 THz). Owing to the suppression of inter-landau-level non-radiative scattering, the device shows magnetic field assisted laser action at 1 THz at temperatures up to 215 K, and 3 THz lasing up to 225 K.
Document ID
20100017129
Acquisition Source
Headquarters
Document Type
Reprint (Version printed in journal)
Authors
Wade, A.
(National High Magnetic Field Lab. Tallahassee, FL, United States)
Fedorov, G.
(National High Magnetic Field Lab. Tallahassee, FL, United States)
Smirnov, D.
(National High Magnetic Field Lab. Tallahassee, FL, United States)
Kumar, S.
(Massachusetts Inst. of Tech. Cambridge, MA, United States)
Williams, B. S.
(Massachusetts Inst. of Tech. Cambridge, MA, United States)
Hu, Q.
(Massachusetts Inst. of Tech. Cambridge, MA, United States)
Reno, J. L.
(Sandia National Labs. Albuquerque, NM, United States)
Date Acquired
August 24, 2013
Publication Date
December 14, 2008
Publication Information
Publication: Nature Photonics
Publisher: Nature Publishing Group
Volume: 3
Subject Category
Physics (General)
Funding Number(s)
CONTRACT_GRANT: NNX07I99G
CONTRACT_GRANT: DE-AC04-94AL85000
CONTRACT_GRANT: NSF DMR-0084173
Distribution Limits
Public
Copyright
Other

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