most citedGermanium under high tensile stress: nonlinear dependence of direct band gap vs. strain

3 citations · 3 across the 1 of their papers we have counts for

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5 papers

physics.optics2017

Optically pumped GeSn micro-disks with 16 % Sn lasing at 3.1 um up to 180K

V. Reboud, A. Gassenq, N. Pauc +13

Recent demonstrations of optically pumped lasers based on GeSn alloys put forward the prospect of efficient laser sources monolithically integrated on a Si photonic platform. For i…

cond-mat.mtrl-sci2017

Raman spectral shift versus strain and composition in GeSn layers with: 6 to 15% Sn contents

A. Gassenq, L. Milord, J. Aubin +8

GeSn alloys are the subject of intense research activities as these group IV semiconductors present direct bandgap behaviors for high Sn contents. Today, the control of strain beco…

cond-mat.mtrl-sci2016★ 3 cited

Germanium under high tensile stress: nonlinear dependence of direct band gap vs. strain

K. Guilloy, N. Pauc, A. Gassenq +15

Germanium is a strong candidate as a laser source for silicon photonics. It is widely accepted that the band structure of germanium can be altered by tensile strain so as to reduce…

cond-mat.mtrl-sci2016

Accurate strain measurements in highly strained Ge microbridges

A. Gassenq, S. Tardif, K. Guilloy +16

Ge under high strain is predicted to become a direct bandgap semiconductor. Very large deformations can be introduced using microbridge devices. However, at the microscale, strain…

cond-mat.mtrl-sci2016

Uniaxially stressed germanium with fundamental direct band gap

R. Geiger, T. Zabel, E. Marin +17

We demonstrate the crossover from indirect- to direct band gap in tensile-strained germanium by temperature-dependent photoluminescence. The samples are strained microbridges that…