Showing results (11-20 of 35) with videos related to
Sort By:
Pageof 4
Optics Express|August 20, 2010
Thickness dependence of the terahertz response in (110)-oriented GaAs crystals for electro-optic sampling at 1.55 micromZhenyu Zhao, Andre Schwagmann, Frank Ospald, et al.Physical Review Letters|June 8, 2019
Spectroscopy of Quantum Dot Orbitals with In-Plane Magnetic FieldsLeon C Camenzind, Liuqi Yu, Peter Stano, et al.Optics Express|April 4, 2018
Directly modulated 1.3 μm quantum dot lasers epitaxially grown on siliconDaisuke Inoue, Daehwan Jung, Justin Norman, et al.Optics Express|November 25, 2018
Optical frequency combs from high-order sideband generationDarren C Valovcin, Hunter B Banks, Shawn Mack, et al.Nano Letters|May 30, 2008
Reducing thermal conductivity of crystalline solids at high temperature using embedded nanostructuresWoochul Kim, Suzanne L Singer, Arun Majumdar, et al.Nature Communications|August 29, 2018
Hyperfine-phonon spin relaxation in a single-electron GaAs quantum dotLeon C Camenzind, Liuqi Yu, Peter Stano, et al.Nature|December 1, 2006
Active terahertz metamaterial devicesHou-Tong Chen, Willie J Padilla, Joshua M O Zide, et al.Optics Letters|May 19, 2016
Optically pumped 1.3 μm room-temperature InAs quantum-dot micro-disk lasers directly grown on (001) siliconYating Wan, Qiang Li, Alan Y Liu, et al.Optics Express|September 9, 2016
1.3-μm InAs quantum-dot micro-disk lasers on V-groove patterned and unpatterned (001) siliconQiang Li, Yating Wan, Alan Y Liu, et al.Advanced Materials (Deerfield Beach, Fla.)|July 14, 2011
Semimetal/semiconductor nanocomposites for thermoelectricsHong Lu, Peter G Burke, Arthur C Gossard, et al.Pageof 4