Erbium-implanted WS2 flakes emit narrow, millisecond-lifetime, polarized telecom light after annealing, with supporting quantum-embedding calculations.
Ab initio calculations of erbium crystal field splittings in oxide hosts
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
We present an effective ab initio method to calculate the crystal field coefficients of an erbium (Er3+) ion experiencing different local site symmetries in several wide-band-gap oxides, and then evaluate crystal field splittings of these Er3+ ions for their ground and excited states. The optical transitions between the ground state (Z) and excited state (Y) manifolds of the environmentally shielded 4f states of these Er3+ ions have wavelengths ~1.5 microns and thus have potential applications to quantum communications and quantum memories. These results are in excellent agreement with recent low-temperature measurements, provided the inadequate calculation of the 4f shell screening is adjusted by reducing the radial extent of the 4f wavefunctions by approximately a factor of 2.
fields
cond-mat.mes-hall 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
Erbium-implanted WS2 flakes with room-temperature photon emission at telecom wavelengths
Erbium-implanted WS2 flakes emit narrow, millisecond-lifetime, polarized telecom light after annealing, with supporting quantum-embedding calculations.