Scanning Tunneling Microscopy Observation of Phonon Condensate

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This article discusses results showing that the effective radius of these phonon quasi-bound states, the real-space distribution of phonon standing wave amplitudes, the scattering phase shifts, and the nonlinear intermode coupling strongly depend on the presence of defect-induced scattering resonance.

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10 p.

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Altfeder, Igor; Voevodin, Andrey A.; Check, Michael H.; Eichfeld, Sarah M.; Robinson, Joshua A. & Balatsky, Alexander V. February 22, 2017.

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This article discusses results showing that the effective radius of these phonon quasi-bound states, the real-space distribution of phonon standing wave amplitudes, the scattering phase shifts, and the nonlinear intermode coupling strongly depend on the presence of defect-induced scattering resonance.

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10 p.

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  • Scientific Reports, 2017. London, UK: Nature Publishing Group

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  • Publication Title: Scientific Reports
  • Volume: 7
  • Pages: 10
  • Peer Reviewed: Yes

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  • February 22, 2017

Added to The UNT Digital Library

  • March 31, 2017, 9:51 a.m.

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  • Oct. 24, 2023, 9:25 a.m.

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Altfeder, Igor; Voevodin, Andrey A.; Check, Michael H.; Eichfeld, Sarah M.; Robinson, Joshua A. & Balatsky, Alexander V. Scanning Tunneling Microscopy Observation of Phonon Condensate, article, February 22, 2017; London, UK. (https://digital.library.unt.edu/ark:/67531/metadc967161/: accessed June 2, 2024), University of North Texas Libraries, UNT Digital Library, https://digital.library.unt.edu; crediting UNT College of Engineering.

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