Strain engineering is a powerful approach in micro- and optoelectronics to enhance carrier mobility, tune the bandgap of heterostructures, or break lattice symmetry for nonlinear optics. The dielectric stressors and bonding interfaces used for strain engineering in photonics can however limit thermal dissipation and the maximum operation temperature of devices. We demonstrate a new approach for enhanced thermal dissipation with stressor layers by combining metals and dielectrics. The method is applied to the germanium semiconductor. All-around tensile-strained germanium microdisks have been fabricated with metallic pedestals. The transferred tensile strain leads to a germanium thin film with a direct bandgap. Under continuous wave optical p...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron grating...
International audienceCurrently, one of the main challenges in the field of silicon photonics is the...
International audienceCurrently, one of the main challenges in the field of silicon photonics is the...
International audienceHighly strained germanium is thought of as a gain medium for silicon photonics...
In this paper, we focus on developing an efficient silicon-compatible light emitter based on highly-...
International audienceWe propose to use a Ge-dielectric-metal stacking to allow one to address both ...
Strained germanium nanowires have recently become an important material of choice for silicon-compat...
Band-gap engineering of bulk germanium (Ge) holds the potential for realizing a laser source, permit...
Strained germanium nanowires have recently become an important material of choice for silicon-compat...
Germanium (Ge) is a group-IV semiconductor promissing for both advanced electronics and photonics ap...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron grating...
International audienceCurrently, one of the main challenges in the field of silicon photonics is the...
International audienceCurrently, one of the main challenges in the field of silicon photonics is the...
International audienceHighly strained germanium is thought of as a gain medium for silicon photonics...
In this paper, we focus on developing an efficient silicon-compatible light emitter based on highly-...
International audienceWe propose to use a Ge-dielectric-metal stacking to allow one to address both ...
Strained germanium nanowires have recently become an important material of choice for silicon-compat...
Band-gap engineering of bulk germanium (Ge) holds the potential for realizing a laser source, permit...
Strained germanium nanowires have recently become an important material of choice for silicon-compat...
Germanium (Ge) is a group-IV semiconductor promissing for both advanced electronics and photonics ap...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron gratings ...
The photoluminescence of tensile strained germanium nanostructures is reported. Sub-micron grating...