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1.
Phys Rev Lett ; 104(1): 017401, 2010 Jan 08.
Article in English | MEDLINE | ID: mdl-20366391

ABSTRACT

Single air-suspended carbon nanotubes (length 2-5 microm) exhibit high optical quantum efficiency (7-20%) for low intensity resonant pumping. Under ultrafast excitation (150 fs), emission dramatically saturates at very low exciton numbers (2-6), which is attributed to highly efficient exciton-exciton annihilation over micron-length scales. Similar saturation behavior for 4 ps pulse excitation shows nonlinear absorption is not a contributing factor. The absorption cross sections (0.6-1.8x10(-17) cm2/atom) are determined by fitting to a stochastic model for exciton dynamics.

2.
Opt Express ; 16(17): 13158-67, 2008 Aug 18.
Article in English | MEDLINE | ID: mdl-18711554

ABSTRACT

The optical loss of whispering gallery modes of resonantly excited microresonator spheres is determined by optical lifetime measurements. The phase-shift cavity ring-down technique is used to extract ring-down times and optical loss from the difference in amplitude modulation phase between the light entering the microresonator and light scattered from the microresonator. In addition, the phase lag of the light exiting the waveguide, which was used to couple light into the resonator, was measured. The intensity and phase measurements were fully described by a model that assumed interference of the cavity modes with the light propagating in the waveguide.


Subject(s)
Computer-Aided Design , Models, Theoretical , Optics and Photonics/instrumentation , Refractometry/instrumentation , Transducers , Computer Simulation , Equipment Design , Equipment Failure Analysis , Light , Miniaturization , Scattering, Radiation
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