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Figiel, J.J.; Cross, Karen C.; Wright, Jeremy B.; Wang, George T.; Luk, Ting S.; Brener, Igal B.
Figiel, J.J.; Cross, Karen C.; Wright, Jeremy B.; Wang, George T.; Luk, Ting S.; Brener, Igal B.
Wright, Jeremy B.; Benz, Alexander B.; Liu, Sheng L.; Wang, George T.; Li, Qiming L.; Koleske, Daniel K.; Lu, Ping L.; Luk, Ting S.; Brener, Igal B.; Subramania, Ganapathi S.
Brener, Igal B.; Fofang, Nche T.; Liu, Sheng L.; Luk, Ting S.; Gonzalez, Edward R.; Dominguez, Jason J.
Brener, Igal B.; Fofang, Nche T.; Liu, Sheng L.; Luk, Ting S.; Gonzalez, Edward R.; Dominguez, Jason J.
Nature Nanotechnology
Wright, Jeremy B.; Koleske, Daniel K.; Lu, Ping L.; Benz, Alexander B.; Subramania, Ganapathi S.; Li, Qiming L.; Brener, Igal B.; Luk, Ting S.; Wang, George T.; Liu, Sheng L.
Brener, Igal B.; Fofang, Nche T.; Liu, Sheng L.; Luk, Ting S.; Gonzalez, Edward R.; Dominguez, Jason J.
Wright, Jeremy B.; Li, Qiming L.; Brener, Igal B.; Luk, Ting S.; Wang, George T.
Wright, Jeremy B.; Koleske, Daniel K.; Lu, Ping L.; Subramania, Ganapathi S.; Li, Qiming L.; Brener, Igal B.; Luk, Ting S.; Wang, George T.; Liu, Sheng L.
Wright, Jeremy B.; Liu, Sheng L.; Wang, George T.; Li, Qiming L.; Koleske, Daniel K.; Lu, Ping L.; Luk, Ting S.; Brener, Igal B.; Subramania, Ganapathi S.
Wright, Jeremy B.; Liu, Sheng L.; Li, Qiming L.; Wang, George T.; Luk, Ting S.; Figiel, J.J.; Cross, Karen C.; Brener, Igal B.
Brener, Igal B.; Fofang, Nche T.; Liu, Sheng L.; Luk, Ting S.; Gonzalez, Edward R.; Dominguez, Jason J.
Fofang, Nche T.; Okandan, Murat O.; Nielson, Gregory N.; Luk, Ting S.; Brener, Igal B.
Proposed for publication in Applied Physics Letters.
Sinclair, Michael B.; Luk, Ting S.
Proposed for publication in Applied Physics Letters.
Wright, Jeremy B.; Li, Qiming L.; Luk, Ting S.; Figiel, J.J.; Cross, Karen C.; Brener, Igal B.; Wang, George T.
Proposed for publication in Applied Physics Letters.
Pan, Wei P.; Luk, Ting S.; Crawford, Mary H.
Li, Qiming L.; Koleske, Daniel K.; Wang, George T.; Wright, Jeremy B.; Luk, Ting S.; Brener, Igal B.; Figiel, J.J.; Cross, Karen C.; Crawford, Mary H.
Subramania, Ganapathi S.; Fischer, Arthur J.; Luk, Ting S.; Brener, Igal B.
Proposed for publication in Applied Physics Letters.
Wang, George T.; Wright, Jeremy B.; Luk, Ting S.; Li, Qiming L.
Optics Express
Li, Qiming L.; Wright, Jeremy B.; Chow, Weng W.; Luk, Ting S.; Brener, Igal B.; Lester, Luke F.; Wang, George T.
We demonstrate stable, single-frequency output from single, asfabricated GaN nanowire lasers operating far above lasing threshold. Each laser is a linear, double-facet GaN nanowire functioning as gain medium and optical resonator, fabricated by a top-down technique that exploits a tunable dry etch plus anisotropic wet etch for precise control of the nanowire dimensions and high material gain. A single-mode linewidth of ∼0.12 nm and >18dB side-mode suppression ratio are measured. Numerical simulations indicate that single-mode lasing arises from strong mode competition and narrow gain bandwidth. © 2012 Optical Society of America.
Wang, George T.; Li, Qiming L.; Wierer, Jonathan W.; Koleske, Daniel K.; Figiel, J.J.; Wright, Jeremy B.; Luk, Ting S.; Brener, Igal B.
Li, Qiming L.; Brener, Igal B.; Cross, Karen C.; Wang, George T.; Figiel, J.J.; Wright, Jeremy B.; Chow, Weng W.; Koleske, Daniel K.; Luk, Ting S.
Proposed for publication in Journal of Applied Physics.
Martinez, Julio M.; Luk, Ting S.; Sullivan, John P.; Swartzentruber, Brian S.
Wright, Jeremy B.; Li, Qiming L.; Luk, Ting S.; Brener, Igal B.; Wang, George T.; Chow, Weng W.
Swartzentruber, Brian S.; Martinez, Julio M.; Sullivan, John P.; Luk, Ting S.; Liu, Xiaohua L.
Results 126–150 of 195