Picosecond Optically Induced Anisotropic State Filling in Semiconductors

Picosecond self-diffraction is observed from transient orientational gratings produced in germanium by an anisotropic (in k space) filling of the optically coupled states by direct absorption of the nearly monochromatic polarized exciting radiation, the first direct observation of anisotropic state...

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Published in:Physical review letters Vol. 49; no. 13; pp. 933 - 936
Main Authors: Smirl, A L, Boggess, T F, Wherrett, B S, Perryman, G P, Miller, A
Format: Journal Article
Language:English
Published: 01-01-1982
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Abstract Picosecond self-diffraction is observed from transient orientational gratings produced in germanium by an anisotropic (in k space) filling of the optically coupled states by direct absorption of the nearly monochromatic polarized exciting radiation, the first direct observation of anisotropic state filling in semiconductors. A new theoretical model is presented briefly; agreement is found with all aspects of the experiment.
AbstractList Picosecond self-diffraction is observed from transient orientational gratings produced in germanium by an anisotropic (in k space) filling of the optically coupled states by direct absorption of the nearly monochromatic polarized exciting radiation, the first direct observation of anisotropic state filling in semiconductors. A new theoretical model is presented briefly; agreement is found with all aspects of the experiment.
Picosecond self-diffraction is observed from transient orientational gratings produced in Ge by an anisotropic (in k space) filling of the optically coupled states by direct absorption of the nearly monochromatic polarized exciting radiation, the first direct observation of anisotropic state filling in semiconductors. A new theoretical model is presented; agreement is found with all aspects of the experiment.--AA
Author Boggess, T F
Wherrett, B S
Smirl, A L
Perryman, G P
Miller, A
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Cites_doi 10.1103/PhysRevLett.34.479
10.1103/PhysRevB.20.2401
10.1103/PhysRevB.18.7033
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References C. J. Kennedy (PhysRevLett.49.933Cc1R1) 1974; 32
C. V. Shank (PhysRevLett.49.933Cc2R1) 1975; 34
J. R. Lindle (PhysRevLett.49.933Cc3R1) 1979; 20
D. K. Ferry (PhysRevLett.49.933Cc5R1) 1978; 18
A. L. Smirl (PhysRevLett.49.933Cc4R1) 1981; C7
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  publication-title: J. Phys. (Paris), Colloq.
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    fullname: A. L. Smirl
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  ident: PhysRevLett.49.933Cc2R1
  publication-title: Phys. Rev. Lett.
  doi: 10.1103/PhysRevLett.34.479
  contributor:
    fullname: C. V. Shank
– volume: 20
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  ident: PhysRevLett.49.933Cc3R1
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  doi: 10.1103/PhysRevB.20.2401
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  doi: 10.1103/PhysRevB.18.7033
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Snippet Picosecond self-diffraction is observed from transient orientational gratings produced in germanium by an anisotropic (in k space) filling of the optically...
Picosecond self-diffraction is observed from transient orientational gratings produced in Ge by an anisotropic (in k space) filling of the optically coupled...
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