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D N Basov

Showing results (21-30 of 154) with videos related to

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Nano Letters|September 16, 2020
Quantitative Nanoinfrared Spectroscopy of Anisotropic van der Waals MaterialsFrancesco L Ruta, Aaron J Sternbach, Adji B Dieng, et al.
Advanced Materials (Deerfield Beach, Fla.)|April 2, 2019
Modern Scattering-Type Scanning Near-Field Optical Microscopy for Advanced Material ResearchXinzhong Chen, Debo Hu, Ryan Mescall, et al.
Optics Express|April 27, 2022
Rapid simulations of hyperspectral near-field images of three-dimensional heterogeneous surfaces - part IIXinzhong Chen, Ziheng Yao, Zhiyuan Sun, et al.
Science Advances|August 27, 2019
Ultrafast nonlocal collective dynamics of Kane plasmon-polaritons in a narrow-gap semiconductorA Charnukha, A Sternbach, H T Stinson, et al.
ACS Photonics|December 25, 2023
Ultrabroadband Terahertz Near-Field Nanospectroscopy with a HgCdTe DetectorLukas Wehmeier, Mengkun Liu, Suji Park, et al.
Physical Review Letters|February 21, 2006
Heavy fermion fluid in high magnetic fields: an infrared study of CeRu4Sb12S V Dordevic, K S D Beach, N Takeda, et al.
Optics Letters|February 6, 2013
Thermal tuning of mid-infrared plasmonic antenna arrays using a phase change materialMikhail A Kats, Romain Blanchard, Patrice Genevet, et al.
Physical Review Letters|February 6, 2016
Random Field Driven Spatial Complexity at the Mott Transition in VO(2)Shuo Liu, B Phillabaum, E W Carlson, et al.
Physical Review Letters|August 7, 2007
Light quasiparticles dominate electronic transport in molecular crystal field-effect transistorsZ Q Li, V Podzorov, N Sai, et al.
Physical Review Letters|June 4, 2016
Erratum: Random Field Driven Spatial Complexity at the Mott Transition in VO_{2} [Phys. Rev. Lett. 116, 036401 (2016)]Shuo Liu, B Phillabaum, E W Carlson, et al.
Pageof 16

Showing results (21-30 of 154) with videos related to

Sort By:
Pageof 16
Nano Letters|September 16, 2020
Quantitative Nanoinfrared Spectroscopy of Anisotropic van der Waals MaterialsFrancesco L Ruta, Aaron J Sternbach, Adji B Dieng, et al.
Advanced Materials (Deerfield Beach, Fla.)|April 2, 2019
Modern Scattering-Type Scanning Near-Field Optical Microscopy for Advanced Material ResearchXinzhong Chen, Debo Hu, Ryan Mescall, et al.
Optics Express|April 27, 2022
Rapid simulations of hyperspectral near-field images of three-dimensional heterogeneous surfaces - part IIXinzhong Chen, Ziheng Yao, Zhiyuan Sun, et al.
Science Advances|August 27, 2019
Ultrafast nonlocal collective dynamics of Kane plasmon-polaritons in a narrow-gap semiconductorA Charnukha, A Sternbach, H T Stinson, et al.
ACS Photonics|December 25, 2023
Ultrabroadband Terahertz Near-Field Nanospectroscopy with a HgCdTe DetectorLukas Wehmeier, Mengkun Liu, Suji Park, et al.
Physical Review Letters|February 21, 2006
Heavy fermion fluid in high magnetic fields: an infrared study of CeRu4Sb12S V Dordevic, K S D Beach, N Takeda, et al.
Optics Letters|February 6, 2013
Thermal tuning of mid-infrared plasmonic antenna arrays using a phase change materialMikhail A Kats, Romain Blanchard, Patrice Genevet, et al.
Physical Review Letters|February 6, 2016
Random Field Driven Spatial Complexity at the Mott Transition in VO(2)Shuo Liu, B Phillabaum, E W Carlson, et al.
Physical Review Letters|August 7, 2007
Light quasiparticles dominate electronic transport in molecular crystal field-effect transistorsZ Q Li, V Podzorov, N Sai, et al.
Physical Review Letters|June 4, 2016
Erratum: Random Field Driven Spatial Complexity at the Mott Transition in VO_{2} [Phys. Rev. Lett. 116, 036401 (2016)]Shuo Liu, B Phillabaum, E W Carlson, et al.
Pageof 16