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We present a hybrid light-emitting diode structure composed of an n-type gallium nitride nanowire on a p-type silicon substrate in which current is injected along the length of the nanowire. The device emits ultraviolet light under both…

Other Condensed Matter · Physics 2007-08-10 Mariano A. Zimmler , Jiming Bao , Ilan Shalish , Wei Yi , Joonah Yoon , Venkatesh Narayanamurti , Federico Capasso

Bottom up nanowires are attractive for realizing semiconductor devices with extreme heterostructures because strain relaxation through the nanowire sidewalls allows the combination of highly lattice mismatched materials without creating…

A GaN resonant cavity light emitting diode was built on a GaN-AlN distributed Bragg reflector grown on a silicon substrate. The electroluminescence output increased by 2.5 times for a GaN diode coupled to a properly designed resonant…

Applied Physics · Physics 2020-09-04 Michael A. Mastro , Joshua D. Caldwell , Ron T. Holm , Rich L. Henry , Charles R. Eddy

Unlike non-polar semiconductors such as silicon, the broken inversion symmetry of the wide bandgap semiconductor gallium nitride leads to a large electronic polarization along a unique crystal axis. This makes the two surfaces of the…

Nanowire photodetectors are investigated because of their compatibility with flexible electronics, or for the implementation of on-chip optical interconnects. Such devices are characterized by ultrahigh photocurrent gain, but their…

Mesoscale and Nanoscale Physics · Physics 2019-04-30 Maria Spies , Jakub Polaczyński , Akhil Ajay , Dipankar Kalita , Jonas Lähnemann , Bruno Gayral , Martien I. den Hertog , Eva Monroy

Gallium nitride (GaN) has emerged as an essential semiconductor material for energy-efficient lighting and electronic applications owing to its large direct bandgap of 3.4 eV. Present GaN/AlGaN heterostructures seemingly feature an…

Mesoscale and Nanoscale Physics · Physics 2018-12-20 S. Schmult , S. Wirth , V. V. Solovyev , R. Hentschel , A. Wachowiak , A. Großer , I. V. Kukushkin , T. Mikolajick

N-polar GaN p-n diodes are realized on single-crystal N-polar GaN bulk wafers by plasma-assisted molecular beam epitaxy growth. The current-voltage characteristics show high-quality rectification and electroluminescence characteristics with…

Materials Science · Physics 2017-06-23 YongJin Cho , Zongyang Hu , Kazuki Nomoto , Huili Grace Xing , Debdeep Jena

N-polar GaN/AlN resonant tunneling diodes are realized on single-crystal N-polar GaN bulk substrate by plasma-assisted molecular beam epitaxy growth. The room-temperature current-voltage characteristics reveal a negative differential…

Materials Science · Physics 2020-10-08 YongJin Cho , Jimy Encomendero , Shao-Ting Ho , Huili Grace Xing , Debdeep Jena

Gallium nitride (GaN) as a wide-band gap material has been widely used in solid-state lighting. Thanks to its high nonlinearity and high refractive index contrast, GaN-on-insulator (GaNOI) is also a promising platform for nonlinear optical…

We report on the design and demonstration of polarization-engineered GaN/InGaN/GaN tunnel junction diodes with high current density and low tunneling turn-on voltage. Wentzel-Kramers-Brillouin (WKB) calculations were used to model and…

We demonstrate second order optical nonlinearity in a silicon architecture through heterogeneous integration of single-crystalline gallium nitride (GaN) on silicon (100) substrates. By engineering GaN microrings for dual resonance around…

We fabricated GaN based hollow nanowires standing upright on a sapphire substrate by the sublimation method and found that they exhibit laser oscillation at room temperature. These very long, hollow, nano-sized structures cannot be…

This work presents a novel Gallium nitride (GaN) high-electron-mobility transistor (HEMT) based ultraviolet photodetector architecture integrating advanced material and structural design strategies to enhance detection performance and…

Optics · Physics 2025-08-12 Mustafa Kilin , Firat Yasar

V-pit-defects in GaN-based light-emitting diodes induced by dislocations are considered beneficial to electroluminescence because they relax the strain in InGaN quantum wells and also enhance the hole lateral injection through sidewall of…

Mesoscale and Nanoscale Physics · Physics 2016-12-20 Lai Wang , Xiao Meng , Di Yang , Zilan Wang , Zhibiao Hao , Yi Luo , Changzheng Sun , Yanjun Han , Bing Xiong , Jian Wang , Hongtao Li

Intersubband optoelectronic devices rely on transitions between quantum-confined electron levels in semiconductor heterostructures, which enables infrared (IR) photodetection in the 1-30 $\mu$m wavelength window with picosecond response…

Materials Science · Physics 2019-01-18 Jonas Lähnemann , Akhil Ajay , Martien I. den Hertog , Eva Monroy

Single photon emitters play a central role in many photonic quantum technologies. A promising class of single photon emitters consists of atomic color centers in wide-bandgap crystals, such as diamond silicon carbide and hexagonal boron…

In this Letter, we report the observation of electroluminescence (EL) at around 866 nm from n-i-n unipolar (electron-transporting) III-V GaAs nanoLEDs. The devices consist of nanopillars with top diameter of 166 nm, arranged in a 10x10…

Applied Physics · Physics 2025-01-20 Bejoys Jacob , João Azevedo , Jana B. Nieder , Bruno Romeira

We report novel graphene nanoribbon (GNR)/semiconductor nanowire (SNW) heterojunction light-emitting diodes (LEDs) for the first time. The GNR and SNW have a face-to-face contact structure, which has the merit of bigger active region. ZnO,…

Mesoscale and Nanoscale Physics · Physics 2011-03-10 Yu Ye , Lin Gan , Lun Dai , Hu Meng , Feng Wei , Yu Dai , Zujin Shi , Bin Yu , Xuefeng Guo , Guogang Qin

The large electronic polarization in III-V nitrides allow for novel physics not possible in other semiconductor families. In this work, interband Zener tunneling in wide-bandgap GaN heterojunctions is demonstrated by using…

Materials Science · Physics 2009-03-18 J. Simon , Z. Zhang , K. Goodman , T. Kosel , P. Fay , D. Jena

Core-shell GaAs-based nanowires monolithically integrated on Si constitute a promising class of nanostructures that could enable light emitters for fast inter- and intrachip optical connections. We introduce and fabricate a novel coaxial…

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