HIGH FIELD MAGNETO-OPTICAL SPECTROSCOPY OF HIGHLY ALIGNED INDIVIDUAL AND ENSEMBLE SINGLE-WALLED CARBON NANOTUBES

被引:0
|
作者
Shaver, J. [1 ]
Srivastava, A. [1 ]
Kono, J. [1 ]
Crooker, S. A. [2 ]
Htoon, H. [3 ]
Klimov, V. I. [3 ]
Fagan, J. A. [4 ]
Hobbie, E. K. [4 ]
Ubrig, N. [5 ]
Portugall, O. [5 ]
Perebeinos, V. [6 ]
Avouris, P. H. [6 ]
机构
[1] Rice Univ, Dept Elect & Comp Engn, Houston, TX 77005 USA
[2] Los Alamos Natl Lab, Natl High Magnet Field, Los Alamos, NM 87545 USA
[3] Los Alamos Natl Lab, Ctr Integrated Nanotechnol, Los Alamos, NM 87545 USA
[4] Natl Inst Stand & Technol, Gaithersburg, MD 20899 USA
[5] Lab Natl Champs Magnet Pulses, F-31400 Toulouse, France
[6] IBM Corp, Div Res, TJ Watson Res Ctr, Yorktown Hts, NY 10598 USA
来源
INTERNATIONAL JOURNAL OF MODERN PHYSICS B | 2009年 / 23卷 / 12-13期
关键词
Carbon Nanotubes; Aharonov-Bohm Phase; Excitons; One Dimensionality; ABSORPTION; EXCITONS; ANISOTROPY;
D O I
10.1142/S0217979209062153
中图分类号
O59 [应用物理学];
学科分类号
摘要
The tubular nature of single-walled carbon nanotube (SWCNT) crystals allows them to exhibit non-intuitive quantum phenomena when threaded by a magnetic flux, which breaks the time reversal symmetry and adds an Aharonov-Bohm phase to the circumferential boundary conditions on the electronic wave function. We demonstrate that such a symmetry-breaking magnetic field can dramatically "brighten" an optically-inactive, or dark, exciton state at low temperature. This phenomenon, magnetic brightening, can be understood as a consequence of interplay between the strong intervalley Coulomb mixing and field-induced lifting of valley degeneracy. Most recently, we made the direct observation of the dark excitonic state in individual SWCNTs using low-temperature micro-photoluminescence (PL) and and verified the importance of a parallel, tube-threading magentic field with ensemble spectroscopy. For micro-PL, a magnetic field up to 5 T, applied along the nanotube axis, brightened the dark state, leading to the emergence of a new emission peak. The peak rapidly grew in intensity with increasing field at the expense of the originally-dominant bright exciton peak and finally became dominant at fields > 3 T. The directly measured dark-bright splitting values were 1-4 meV for tube diameters 1.0-1.3 run. For ensemble PL, we used fields up to 55 T in two collection geometries to demonstrate the importance of the tube-threading component. These experiments have provided one of the most critical tests for recently-proposed theories of 1-D excitons taking into account the strong 1-D Coulomb interactions and unique band structure on an equal footing.
引用
收藏
页码:2667 / 2675
页数:9
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