peer reviewedBoron nitride single layer belongs to the family of two-dimensional materials whose optical properties are currently receiving considerable attention. Strong excitonic effects have already been observed in the bulk and still stronger effects are predicted for single layers. We present here a detailed study of these properties by combining ab initio calculations and a tight-binding Wannier analysis in both real and reciprocal space. Due to the simplicity of the band structure with single valence (π) and conduction (π∗) bands the tight-binding analysis becomes quasiquantitative with only two adjustable parameters and provides tools for a detailed analysis of the exciton properties. Strong deviations from the usua...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Boron nitride single layer belongs to the family of two-dimensional materials whose optical properti...
International audienceBoron nitride single layer belongs to the family of 2D materials whose optical...
Two dimensional materials, which are systems composed of one or several angstrom-thin layers of atom...
Two dimensional materials, which are systems composed of one or several angstrom-thin layers of atom...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Boron nitride single layer belongs to the family of two-dimensional materials whose optical properti...
International audienceBoron nitride single layer belongs to the family of 2D materials whose optical...
Two dimensional materials, which are systems composed of one or several angstrom-thin layers of atom...
Two dimensional materials, which are systems composed of one or several angstrom-thin layers of atom...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
International audienceWe present a general picture of the exciton properties of layered materials in...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...