A microcavity-controlled, current-driven, on-chip nanotube emitter at infrared wavelengths

被引:76
作者
Xia, Fengnian [1 ]
Steiner, Mathias [1 ]
Lin, Yu-Ming [1 ]
Avouris, Phaedon [1 ]
机构
[1] IBM Thomas J Watson Res Ctr, Dept Nanometer Scale Sci & Technol, Yorktown Hts, NY 10598 USA
关键词
D O I
10.1038/nnano.2008.241
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Recent studies of the optical properties of semiconducting single-walled carbon nanotubes(1-6) suggest that these truly nanometre-scale systems have a promising future in nanophotonics, in addition to their well-known potential in electronics(7,8). Semiconducting single-walled nanotubes have a direct, diameter-dependent bandgap(8) and can be excited readily by current injection, which makes them attractive as nano-emitters. The electroluminescence is spectrally broad, spatially non-directional, and the radiative yield is low(5,9). Here we report the monolithic integration of a single, electrically excited, semiconducting nanotube transistor with a planar lambda/2 microcavity(10-13), thus taking an important first step in the development of nanotube-based nanophotonic devices. The spectral full-width at half-maximum of the emission is reduced from similar to 300 to similar to 40 nm at a cavity resonance of 1.75 mu m, and the emission becomes highly directional. The maximum enhancement of the radiative rate is estimated to be 4. We also show that both the optically and electrically excited luminescence of single-walled nanotubes involve the same E-11 excitonic transition.
引用
收藏
页码:609 / 613
页数:5
相关论文
共 30 条
[1]   Spontaneous emission control in semiconductor microcavities with metallic or Bragg mirrors [J].
Abram, I ;
Robert, I ;
Kuszelewicz, R .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1998, 34 (01) :71-76
[2]   Carbon-based electronics [J].
Avouris, Phaedon ;
Chen, Zhihong ;
Perebeinos, Vasili .
NATURE NANOTECHNOLOGY, 2007, 2 (10) :605-615
[3]   Structure-assigned optical spectra of single-walled carbon nanotubes [J].
Bachilo, SM ;
Strano, MS ;
Kittrell, C ;
Hauge, RH ;
Smalley, RE ;
Weisman, RB .
SCIENCE, 2002, 298 (5602) :2361-2366
[4]  
BIERCUK MJ, 2008, CARBON NANOTUBES ADV
[5]   ON THE SPONTANEOUS LIFETIME CHANGE IN AN IDEAL PLANAR MICROCAVITY - TRANSITION FROM A MODE CONTINUUM TO QUANTIZED MODES [J].
BJORK, G .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1994, 30 (10) :2314-2318
[6]   SPONTANEOUS EMISSION RATE ALTERATION IN OPTICAL WAVE-GUIDE STRUCTURES [J].
BRORSON, SD ;
YOKOYAMA, H ;
IPPEN, EP .
IEEE JOURNAL OF QUANTUM ELECTRONICS, 1990, 26 (09) :1492-1499
[7]   Bright infrared emission from electrically induced excitons in carbon nanotubes [J].
Chen, J ;
Perebeinos, V ;
Freitag, M ;
Tsang, J ;
Fu, Q ;
Liu, J ;
Avouris, P .
SCIENCE, 2005, 310 (5751) :1171-1174
[8]   Raman spectroscopy of carbon nanotubes [J].
Dresselhaus, MS ;
Dresselhaus, G ;
Saito, R ;
Jorio, A .
PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS, 2005, 409 (02) :47-99
[9]   Mobile ambipolar domain in carbon-nanotube infrared emitters [J].
Freitag, M ;
Chen, J ;
Tersoff, J ;
Tsang, JC ;
Fu, Q ;
Liu, J ;
Avouris, P .
PHYSICAL REVIEW LETTERS, 2004, 93 (07) :076803-1
[10]   Photoconductivity of single carbon nanotubes [J].
Freitag, M ;
Martin, Y ;
Misewich, JA ;
Martel, R ;
Avouris, PH .
NANO LETTERS, 2003, 3 (08) :1067-1071