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Valence Band Splitting in Wurtzite InP Nanowires Observed by Photoluminescence and Photoluminescence Excitation Spectroscopy 被引量:1
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作者 Gerben L. Tuin Magnus T. Borgstrom +4 位作者 Johanna Tragardh Martin Ek L. Reine Wallenberg Lars Samuelson mats-erik pistol 《Nano Research》 SCIE EI CAS CSCD 2011年第2期159-163,共5页
我们用光致发光,光致发光刺激光谱学和传播电子显微镜学调查了 wurtzite InP 的单个像体积的电线。用二个不同方法,我们发现原子价乐队的顶被切开,理论上期望。这切开原子价乐队对 wurtzite InP 古怪并且不发生在锌闪锌矿 InP。我们... 我们用光致发光,光致发光刺激光谱学和传播电子显微镜学调查了 wurtzite InP 的单个像体积的电线。用二个不同方法,我们发现原子价乐队的顶被切开,理论上期望。这切开原子价乐队对 wurtzite InP 古怪并且不发生在锌闪锌矿 InP。我们发现二个乐队之间的精力差别是 40 兆电子伏。 展开更多
关键词 光致发光激发光谱 纤锌矿结构 InP 分裂 价带 纳米线 透射电子显微镜 闪锌矿
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GaAs/AlGaAs heterostructure nanowires studied by cathodoluminescence
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作者 Jessica Bolinsson Martin Ek +5 位作者 Johanna Tragardh Kilian Mergenthaler Daniel Jacobsson mats-erik pistol Lars Samuelson Anders Gustafsson 《Nano Research》 SCIE EI CAS CSCD 2014年第4期473-490,共18页
关键词 异质结构 纳米线 阴极发光 砷化镓 扫描电子显微镜 透射电子显微镜 GaAs 气相外延生长
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Large-energy-shift photon upconversion in degenerately doped InP nanowires by direct excitation into the electron gas
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作者 Kilian Mergenthaler Azhar Iqbal +5 位作者 Jesper Wallentin Sebastian Lehmann Magnus T. Borgstrom Lars Samuelson Arkady Yartsev mats-erik pistol 《Nano Research》 SCIE EI CAS CSCD 2013年第10期752-757,共6页
Realizing photon upconversion in nanostructures is important for many next- generation applications such as biological labelling, infrared detectors and solar cells. In particular nanowires are attractive for optoelec... Realizing photon upconversion in nanostructures is important for many next- generation applications such as biological labelling, infrared detectors and solar cells. In particular nanowires are attractive for optoelectronics because they can easily be electrically contacted. Here we demonstrate photon upconversion with a large energy shift in highly n-doped InP nanowires. Crucially, the mechanism responsible for the upconversion in our system does not rely on multi-photon absorption via intermediate states, thus eliminating the need for high photon fluxes to achieve upconversion. The demonstrated upconversion paves the way for utilizing nanowires--with their inherent flexibility such as electrical contactability and the ability to position individual nanowires--for photon upconversion devices also at low photon fluxes, possibly down to the single photon level in optimised structures. 展开更多
关键词 NANOWIRES photon upconversion PHOTOLUMINESCENCE indium phosphide
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