Multi-quantum-well nanowire heterostructures for wavelength-controlled lasers

  • Qian, F.
  • Li, Y.
  • Gradečak, S.
  • Park, H.-G.
  • Dong, Y.
  • 외 3명
Citations

SCOPUS

711

초록

Rational design and synthesis of nanowires with increasingly complex structures can yield enhanced and/or novel electronic and photonic functions. For example, Ge/Si core/shell nanowires have exhibited substantially higher performance as field-effect transistors and low-temperature quantum devices compared with homogeneous materials, and nano-roughened Si nanowires were recently shown to have an unusually high thermoelectric figure of merit. Here, we report the first multi-quantum-well (MQW) core/shell nanowire heterostructures based on well-defined III-nitride materials that enable lasing over a broad range of wavelengths at room temperature. Transmission electron microscopy studies show that the triangular GaN nanowire cores enable epitaxial and dislocation-free growth of highly uniform (InGaN/GaN)(n) quantum wells with n≤3, 13 and 26 and InGaN well thicknesses of 1-3nm. Optical excitation of individual MQW nanowire structures yielded lasing with InGaN quantum-well composition-dependent emission from 365 to 494nm, and threshold dependent on quantum well number, n. Our work demonstrates a new level of complexity in nanowire structures, which potentially can yield free-standing injection nanolasers. © 2008 Macmillan Publishers Limited. All rights reserved.

키워드

Field effect transistorsGermaniumHigh resolution transmission electron microscopyNanowiresQuantum well lasersRational functionsTelecommunication repeatersTemperatureTransmission electron microscopyCore/shell nanowiresHomogeneous materialsInGaN quantum wellsMultiquantum wellsNanowire heterostructuresNanowire structuresPhotonic functionsThermoelectric figure of meritSemiconductor quantum wells
제목
Multi-quantum-well nanowire heterostructures for wavelength-controlled lasers
저자
Qian, F.Li, Y.Gradečak, S.Park, H.-G.Dong, Y.Ding, Y.Wang, Z.L.Lieber, C.M.
DOI
10.1038/nmat2253
발행일
2008
유형
Article
저널명
Nature Materials
7
9
페이지
701 ~ 706