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New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation

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New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation. / Kukushkin, I. V.; Akimov, MY; Smet, JH et al.
In: Physical review letters, Vol. 92, No. 23, 236803, 11.06.2004.

Research output: Contribution to Journal/MagazineJournal articlepeer-review

Harvard

Kukushkin, IV, Akimov, MY, Smet, JH, Mikhailov, SA, von Klitzing, K, Aleiner, IL & Falko, V 2004, 'New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation', Physical review letters, vol. 92, no. 23, 236803. https://doi.org/10.1103/PhysRevLett.92.236803

APA

Kukushkin, I. V., Akimov, MY., Smet, JH., Mikhailov, SA., von Klitzing, K., Aleiner, I. L., & Falko, V. (2004). New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation. Physical review letters, 92(23), Article 236803. https://doi.org/10.1103/PhysRevLett.92.236803

Vancouver

Kukushkin IV, Akimov MY, Smet JH, Mikhailov SA, von Klitzing K, Aleiner IL et al. New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation. Physical review letters. 2004 Jun 11;92(23):236803. doi: 10.1103/PhysRevLett.92.236803

Author

Kukushkin, I. V. ; Akimov, MY ; Smet, JH et al. / New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation. In: Physical review letters. 2004 ; Vol. 92, No. 23.

Bibtex

@article{554cb0e704df4a1c8de35976799a70e2,
title = "New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation",
abstract = "We observe a new type of magneto-oscillations in the photovoltage and the longitudinal resistance of a two-dimensional electron system. The oscillations are induced by microwave radiation and are periodic in magnetic field. The period is determined by the microwave frequency, the electron density, and the distance between potential probes. The phenomenon is accounted for by interference of coherently excited edge magnetoplasmons in the contact regions and offers perspectives for developing new tunable microwave and terahertz detection schemes and spectroscopic techniques.",
keywords = "TRANSPORT, FIELD, CHANNELS, EXCITATIONS, GAS, RESISTANCE, FLUID, MAGNETORESISTANCE OSCILLATIONS, EDGE MAGNETOPLASMONS",
author = "Kukushkin, {I. V.} and MY Akimov and JH Smet and SA Mikhailov and {von Klitzing}, K and Aleiner, {Igor L.} and Vladimir Falko",
note = "{\textcopyright} 2004 The American Physical Society",
year = "2004",
month = jun,
day = "11",
doi = "10.1103/PhysRevLett.92.236803",
language = "English",
volume = "92",
journal = "Physical review letters",
issn = "0031-9007",
publisher = "American Physical Society",
number = "23",

}

RIS

TY - JOUR

T1 - New type of B-periodic magneto-oscillations in a two-dimensional electron system induced by microwave irradiation

AU - Kukushkin, I. V.

AU - Akimov, MY

AU - Smet, JH

AU - Mikhailov, SA

AU - von Klitzing, K

AU - Aleiner, Igor L.

AU - Falko, Vladimir

N1 - © 2004 The American Physical Society

PY - 2004/6/11

Y1 - 2004/6/11

N2 - We observe a new type of magneto-oscillations in the photovoltage and the longitudinal resistance of a two-dimensional electron system. The oscillations are induced by microwave radiation and are periodic in magnetic field. The period is determined by the microwave frequency, the electron density, and the distance between potential probes. The phenomenon is accounted for by interference of coherently excited edge magnetoplasmons in the contact regions and offers perspectives for developing new tunable microwave and terahertz detection schemes and spectroscopic techniques.

AB - We observe a new type of magneto-oscillations in the photovoltage and the longitudinal resistance of a two-dimensional electron system. The oscillations are induced by microwave radiation and are periodic in magnetic field. The period is determined by the microwave frequency, the electron density, and the distance between potential probes. The phenomenon is accounted for by interference of coherently excited edge magnetoplasmons in the contact regions and offers perspectives for developing new tunable microwave and terahertz detection schemes and spectroscopic techniques.

KW - TRANSPORT

KW - FIELD

KW - CHANNELS

KW - EXCITATIONS

KW - GAS

KW - RESISTANCE

KW - FLUID

KW - MAGNETORESISTANCE OSCILLATIONS

KW - EDGE MAGNETOPLASMONS

U2 - 10.1103/PhysRevLett.92.236803

DO - 10.1103/PhysRevLett.92.236803

M3 - Journal article

VL - 92

JO - Physical review letters

JF - Physical review letters

SN - 0031-9007

IS - 23

M1 - 236803

ER -