International audienceThe ability to locally activate or generate quantum emitters in two-dimensional materials is of major interest for the realization of integrated quantum photonic devices. In particular, hexagonal boron nitride (hBN) has recently been shown to allow a variety of techniques for obtaining quantum emitters at desired locations. Here, we use cathodoluminescence (CL) to monitor in situ the local activation of color centers by an electron beam in hBN. We observe that the CL signal saturates at a given surface dose, independently of the electron current density. Based on photoluminescence and photon correlations, we show that the number of photoactive color centers is proportional to the CL signal, and we estimate the maximum ...
The development of photonic based quantum technologies such as quantum encryption and quantum comput...
© 2017 IEEE. We demonstrates engineering of quantum emitters in hBN multi-layers using either electr...
The colour centre platform holds promise for quantum technologies, and hexagonal boron nitride has a...
International audienceThe ability to locally activate or generate quantum emitters in two-dimensiona...
Luminescent centers in the two-dimensional material hexagonal boron nitride have the potential to en...
Quantum emitters in layered hexagonal boron nitride (hBN) have recently attracted a great deal of at...
Hexagonal boron nitride (hBN) is an emerging two-dimensional material for quantum photonics owing to...
Quantum emitters (QEs) in 2D hexagonal boron nitride (hBN) are extremely bright and are stable at hi...
International audienceSingle photon emitters (SPEs) in low-dimensional layered materials have recent...
© 2016 OSA. We demonstrate first room temperature, and ultrabright single photon emission from a col...
Luminescence defects, which are commonly known as color centers in hexagonal boron nitride (hBN), ar...
Applications of quantum science to computing, cryptography, and imaging are on their way to becoming...
Hexagonal boron nitride is a wide-band-gap van der Waals material that has recently emerged as a pro...
Defect centers in two-dimensional hexagonal boron nitride (hBN) are drawing attention as single-phot...
Defect centers in two-dimensional hexagonal boron nitride (hBN) are drawing attention as single phot...
The development of photonic based quantum technologies such as quantum encryption and quantum comput...
© 2017 IEEE. We demonstrates engineering of quantum emitters in hBN multi-layers using either electr...
The colour centre platform holds promise for quantum technologies, and hexagonal boron nitride has a...
International audienceThe ability to locally activate or generate quantum emitters in two-dimensiona...
Luminescent centers in the two-dimensional material hexagonal boron nitride have the potential to en...
Quantum emitters in layered hexagonal boron nitride (hBN) have recently attracted a great deal of at...
Hexagonal boron nitride (hBN) is an emerging two-dimensional material for quantum photonics owing to...
Quantum emitters (QEs) in 2D hexagonal boron nitride (hBN) are extremely bright and are stable at hi...
International audienceSingle photon emitters (SPEs) in low-dimensional layered materials have recent...
© 2016 OSA. We demonstrate first room temperature, and ultrabright single photon emission from a col...
Luminescence defects, which are commonly known as color centers in hexagonal boron nitride (hBN), ar...
Applications of quantum science to computing, cryptography, and imaging are on their way to becoming...
Hexagonal boron nitride is a wide-band-gap van der Waals material that has recently emerged as a pro...
Defect centers in two-dimensional hexagonal boron nitride (hBN) are drawing attention as single-phot...
Defect centers in two-dimensional hexagonal boron nitride (hBN) are drawing attention as single phot...
The development of photonic based quantum technologies such as quantum encryption and quantum comput...
© 2017 IEEE. We demonstrates engineering of quantum emitters in hBN multi-layers using either electr...
The colour centre platform holds promise for quantum technologies, and hexagonal boron nitride has a...