International audienceThe emission cascade of a single quantum dot is a promising source of entangled photons. A prerequisite for this source is the use of a symmetric dot analogous to an atom in a vacuum, but the simultaneous achievement of structural symmetry and emission in a telecom band poses a challenge. Here we report the growth and characterization of highly symmetric InAs/InAlAs quantum dots self-assembled on C3v symmetric InP(111)A. The broad emission spectra cover the O (λ∼1.3 μm), C (λ∼1.55 μm), and L (λ∼1.6 μm) telecom bands. The distribution of the fine-structure splittings is considerably smaller than those reported in previous works on dots at similar wavelengths. The presence of dots with degenerate exciton lines is further...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
Efficient sources of individual pairs of entangled photons are required for quantum networks to oper...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
Efficient sources of individual pairs of entangled photons are required for quantum networks to oper...
The effcient generation of entangled photons at telecom wavelength is crucial for the success of man...
Quantum dots based on InAs/InP hold the promise to deliver entangled photons with wavelength suitabl...
We present a novel semiconductor single-photon source based on tensile-strained (111)-oriented GaAs/...
We present a novel semiconductor single-photon source based on tensile-strained (111)-oriented GaAs/...
We present a novel semiconductor single-photon source based on tensile-strained (111)-oriented GaAs/...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
Efficient sources of individual pairs of entangled photons are required for quantum networks to oper...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
International audienceThe emission cascade of a single quantum dot is a promising source of entangle...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
We present self-assembly of InAs/InAlAs quantum dots by the droplet epitaxy technique on vicinal GaA...
Efficient sources of individual pairs of entangled photons are required for quantum networks to oper...
The effcient generation of entangled photons at telecom wavelength is crucial for the success of man...
Quantum dots based on InAs/InP hold the promise to deliver entangled photons with wavelength suitabl...
We present a novel semiconductor single-photon source based on tensile-strained (111)-oriented GaAs/...
We present a novel semiconductor single-photon source based on tensile-strained (111)-oriented GaAs/...
We present a novel semiconductor single-photon source based on tensile-strained (111)-oriented GaAs/...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...
Efficient sources of individual pairs of entangled photons are required for quantum networks to oper...
Symmetric quantum dots (QDs) on (111)-oriented surfaces are promising candidates for generating pola...