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Mn-doped GaAs thin films were grown at a high substrate temperature of 580 C. During the growth process, the Mn cell temperature was ramped at different rates, resulting in a variety of different Mn concentration depth profile slopes, as…

Mesoscale and Nanoscale Physics · Physics 2015-02-11 P. Xu , D. Qi , M. L. Ackerman , S. D. Barber , P. M. Thibado

Thin GaMnAs layers grown by molecular beam epitaxy were subjected to low-temperature post growth annealing, with an amorphous arsenic capping layer deposited on the GaMnAs surface directly after the epitaxial growth. It is shown that the…

Materials Science · Physics 2007-05-23 J. Sadowski , J. Z. Domagala , V. Osinniy , J. Kanski , M. Adell , L. Ilver , C. Hernandez , F. Terki , S. Charar , D. Maude

We report on detailed investigations of the electronic and magnetic properties of ferromagnetic GaMnAs layers, which have been fabricated by low-temperature molecular-beam epitaxy. Superconducting quantum interference device measurements…

An impact of thin metallic ZrN layers on Si and sapphire wafers on substrate temperature during MBE growth of GaN nanowires is studied. Using nucleation kinetics of GaN as a sensitive probe we show that a thin ZrN layer strongly increases…

We report on an enhancement of the Curie temperature in GaMnAs/InGaMnAs superlattices grown by low-temperature molecular beam epitaxy, which is due to thin InGaMnAs or InGaAs films embedded into the GaMnAs layers. The pronounced increase of…

Materials Science · Physics 2009-11-10 A. Koeder , W. Limmer , S. Frank , W. Schoch , V. Avrutin , R. Sauer , K. Zuern , P. Ziemann , A. Waag

Temperature dependence of intersubband transitions in AlN/GaN multiple quantum wells grown with molecular beam epitaxy is investigated both by absorption studies at different temperatures and modeling of conduction-band electrons. For the…

AlN thin films have been grown on Si (100) substrates by reactive ion beam sputter deposition (IBSD) at different substrate temperatures varying from room temperature (RT) to 500oC. Substrate temperature induced microstructural transition…

Materials Science · Physics 2016-02-23 Neha Sharma , Shilpam Sharma , K. Prabakar , S. Amirthapandian , S. Ilango , S. Dash , A. K. Tyagi

The effect of outdiffusion of Mn interstitials from (Ga,Mn)As epitaxial layers, caused by post-growth low-temperature annealing, on their electronic- and band-structure properties has been investigated by modulation photoreflectance (PR)…

Materials Science · Physics 2015-06-16 O. Yastrubchak , T. Andrearczyk , J. Z. Domagala , J. Sadowski , L. Gluba , J. Zuk , T Wosinski

Spontaneous formation of grains has been observed for the MnAs layer grown by means of MBE on the GaN(0001)-(1x1) surface. Electronic structure of the system was investigated in situ by resonant photoemission spectroscopy. Density of the…

GaMnAs thin films with different Mn doping concentrations were grown via molecular beam epitaxy using a substrate temperature of 250 {\deg}C. The thin films were investigated using photoluminescence (PL) measurements from 8 to 300 K.…

Mesoscale and Nanoscale Physics · Physics 2015-06-23 J. F. Xu , S. W. Liu , M. Xiao , P. M. Thibado

We studied the effect of the V/III flux ratio and substrate temperature on magnetotransport properties and lattice parameters of Ga0.96Mn0.04As grown by molecular beam epitaxy. For all the substrate temperatures, the conductivities and…

Condensed Matter · Physics 2007-05-23 V. Avrutin , D. Humienik , S. Frank , A. Koeder , W. Schoch , W. Limmer , R. Sauer , A. Waag

The present study elucidates the correlation between the structural and optical properties of GaN nanowires grown on Si(111) substrate by plasma assisted molecular beam epitaxy (PA-MBE) technique under various growth conditions. GaN NWs…

Materials Science · Physics 2016-03-30 Ritam Sarkar , R. Fandan , Krista R. Khiangte , S. Chouksey , A. M. Josheph , S. Das , S. Ganguly , D. Saha , Apurba Laha

We report a correlative microscopy study of a sample containing three stacks of InGaN/GaN quantum dots (QDs) grown at different substrate temperature, each stack consisting of 3 layers of QDs. Decreasing the substrate temperature along the…

Materials Science · Physics 2021-06-08 I. Dimkou , J. Houard , N. Rochat , P. Dalapati , E. Di Russo , D. Cooper , A. Grenier , E. Monroy , L. Rigutti

We present an experimental investigation of band-gap shrinkage in n-type GaN using photoluminescence spectroscopy, as a function of electron concentration and temperature. The observed systematic shift of the band-to-band transition energy…

Materials Science · Physics 2007-05-23 Niladri Sarkar , Subhasis Ghosh

We have grown the ferromagnetic semiconductor GaMnAs containing up to 10% Mn by migration enhanced epitaxy at a substrate temperature of 150^oC. The alternate supply of As2 molecules and Ga and Mn atoms made it possible to grow single…

The use of highly efficient and solarblind GaN photocathodes as part of multichannel plate UV detectors for applications in astronomy would strongly benefit from the direct growth of GaN on typical window materials with high transmission…

In metal organic vapor phase epitaxy of GaN, the growth mode is sensitive to reactor temperature. In this study, V-pit-shaped GaN has been grown on normal c-plane cone-patterned sapphire substrate by decreasing the growth temperature of…

Materials Science · Physics 2016-11-28 Lai Wang , Xiao Meng , Di Yang , Zhibiao Hao , Yi Luo , Changzheng Sun , Yanjun Han , Bing Xiong , Jian Wang , Hongtao Li

Growth of GaMnAs by molecular beam epitaxy is typically performed at low substrate temperatures (250C) and high As overpressures leading to the incorporation of excess As and Mn interstitials, which quench optical signals such as…

Materials Science · Physics 2009-09-29 M. Poggio , R. C. Myers , N. P. Stern , A. C. Gossard , D. D. Awschalom

We perform high resolution X-ray diffraction on GaMnAs mixed crystals as well as on GaMnAs/GaAs and GaAs/MnAs superlattices for samples grown by low temperature molecular beam epitaxy under different growth conditions. Although all samples…

Materials Science · Physics 2009-11-07 G. M. Schott , W. Faschinger , L. W. Molenkamp

The electronic band structure of the (Ga,Mn)As system has been one of the most intriguing problems in solid state physics over the past two decades. Determination of the band structure evolution with increasing Mn concentration is a key…

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