نتایج جستجو برای: bandgap

تعداد نتایج: 6741  

2014
Peter Feng Muhammad Sajjad Eric Yiming Li Hongxin Zhang Jin Chu Ali Aldalbahi Gerardo Morell

We report studies of the surface fringe structures and tunable bandgap width of atomic-thin boron nitride nanosheets (BNNSs). BNNSs are synthesized by using digitally controlled pulse deposition techniques. The nanoscale morphologies of BNNSs are characterized by using scanning electron microscope (SEM), and transmission electron microscopy (TEM). In general, the BNNSs appear microscopically fl...

2013
Partha Dey Somnath Datta Scott Broderick Jacek Jasinski Mahendra Sunkara Madhu Menon Krishna Rajan

This paper predicts the bandgaps of over 200 new chalcopyrite compounds for previously untested chemistries. An ensemble data mining approach involving Ordinary Least Squares (OLS), Sparse Partial Least Squares (SPLS) and Elastic Net/Least Absolute Shrinkage and Selection Operator (Lasso) regression methods coupled to Rough Set (RS) and Principal Component Analysis (PCA) methods was used to dev...

Journal: :Journal of Vacuum Science & Technology A 2020

Journal: :Nanoscale 2015
Christian F Gervasi Dmitry A Kislitsyn Thomas L Allen Jason D Hackley Ryuichiro Maruyama George V Nazin

Colloidal semiconductor nanocrystals have emerged as a promising class of technological materials with optoelectronic properties controllable through quantum-confinement effects. Despite recent successes in this field, an important factor that remains difficult to control is the impact of the nanocrystal surface structure on the photophysics and electron transport in nanocrystal-based materials...

2016
Pei Liu Paolo Longo Alexander Zaslavsky Domenico Pacifici

Accurate optical methods are required to determine the energy bandgap of amorphous semiconductors and elucidate the role of quantum confinement in nanometer-scale, ultra-thin absorbing layers. Here, we provide a critical comparison between well-established methods that are generally employed to determine the optical bandgap of thin-film amorphous semiconductors, starting from normal-incidence r...

2015
Marina Tyunina Lide Yao Dagmar Chvostova Alexandr Dejneka Tomas Kocourek Miroslav Jelinek Vladimir Trepakov Sebastiaan van Dijken

Perovskite-type ferroelectric (FE) crystals are wide bandgap materials with technologically valuable optical and photoelectric properties. Here, versatile engineering of electronic transitions is demonstrated in FE nanofilms of KTaO3, KNbO3 (KNO), and NaNbO3 (NNO) with a thickness of 10-30 unit cells. Control of the bandgap is achieved using heteroepitaxial growth of new structural phases on Sr...

2017
Archana Raja Andrey Chaves Jaeeun Yu Ghidewon Arefe Heather M Hill Albert F Rigosi Timothy C Berkelbach Philipp Nagler Christian Schüller Tobias Korn Colin Nuckolls James Hone Louis E Brus Tony F Heinz David R Reichman Alexey Chernikov

The ability to control the size of the electronic bandgap is an integral part of solid-state technology. Atomically thin two-dimensional crystals offer a new approach for tuning the energies of the electronic states based on the unusual strength of the Coulomb interaction in these materials and its environmental sensitivity. Here, we show that by engineering the surrounding dielectric environme...

Journal: :Optics express 2012
Xinyan Fan Meishin Chen Akira Shirakawa Ken-ichi Ueda Christina B Olausson Jens K Lyngsø Jes Broeng

An ytterbium-doped solid-core photonic bandgap fiber oscillator in an all-fiber format is investigated for high power at an extreme long wavelength. The photonic bandgap fiber is spliced with two fiber Bragg gratings to compose the cavity. The sharp-cut bandpass distributed filtering effect of the photonic bandgap fibers efficiently suppresses amplified spontaneous emission in the conventional ...

2014
William J. Chappell Xun Gong

High-K ceramics are embedded into a polymer host to create an electromagnetic bandgap (EBG) substrate that possess superior properties to previous bandgap implementations in terms of stopband width, attenuation per layer, and practicality. Ceramics are periodically spaced in a commercially-available, Teflon-based host to create a bandgap that spans from 12.1 to 24.1 GHz. Miniature dielectric ro...

Journal: :Optics letters 2012
Joris Lousteau Gerardo Scarpignato Giorgos S Athanasiou Emanuele Mura Nadia Boetti Massimo Olivero Trevor Benson Phillip Sewell Silvio Abrate Daniel Milanese

We report on the fabrication and optical assessment of an all-solid tellurite-glass photonic bandgap fiber. The manufacturing process via a preform drawing approach and the fiber characterization procedures are described and discussed. The fiber exhibits some minor morphological deformations that do not prevent the observation of optical confinement within the fiber by bandgap effects. The expe...

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