The strong Coulomb interaction in monolayer semiconductors represents a unique opportunity for the realization of Wigner crystals without external magnetic fields. In this work, we predict that the formation of monolayer Wigner crystals can be detected by their terahertz response spectrum, which exhibits a characteristic sequence of internal optical transitions. We apply the density matrix formalism to derive the internal quantum structure and the optical conductivity of the Wigner crystal and to microscopically analyze the multipeak shape of the obtained terahertz spectrum. Moreover, we predict a characteristic shift of the peak position as a function of charge density for different atomically thin materials and show how our results can be...
Abstract This paper shows how terahertz light can drive ultrafast topological phase transitions in m...
The existence of Wigner crystallization, one of the most significant hallmarks of strong electron co...
Quantum-mechanical phenomena underpin the behaviour of quantum materials at the microscopic level. T...
Heterostructures of van der Waals bonded layered materials offer unique means to tailor dielectric s...
Heterostructures of van der Waals bonded layered materials offer unique means to tailor dielectric s...
Wigner crystals (WCs) are electronic phases peculiar to low-density systems, particularly in the uni...
Van der Waals quantum materials exhibit fascinating emergent phenomena governed by topology, electro...
Van der Waals quantum materials exhibit fascinating emergent phenomena governed by topology, electro...
The interaction between off-resonant laser pulses and excitons in monolayer transition metal dichalc...
Heterostructures of van der Waals bonded layered materials offer unique means to tailor dielectric s...
We study the Wigner crystallization on partially filled topological flat bands of kagome, honeycomb ...
This dissertation attempts to illuminate and expand our understanding of charge dynamics in a number...
Copyright © 2020 American Chemical Society. The interaction between off-resonant laser pulses and ex...
This paper shows how terahertz light can drive ultrafast topological phase transitions in monolayer ...
Copyright © 2020 American Chemical Society. The interaction between off-resonant laser pulses and ex...
Abstract This paper shows how terahertz light can drive ultrafast topological phase transitions in m...
The existence of Wigner crystallization, one of the most significant hallmarks of strong electron co...
Quantum-mechanical phenomena underpin the behaviour of quantum materials at the microscopic level. T...
Heterostructures of van der Waals bonded layered materials offer unique means to tailor dielectric s...
Heterostructures of van der Waals bonded layered materials offer unique means to tailor dielectric s...
Wigner crystals (WCs) are electronic phases peculiar to low-density systems, particularly in the uni...
Van der Waals quantum materials exhibit fascinating emergent phenomena governed by topology, electro...
Van der Waals quantum materials exhibit fascinating emergent phenomena governed by topology, electro...
The interaction between off-resonant laser pulses and excitons in monolayer transition metal dichalc...
Heterostructures of van der Waals bonded layered materials offer unique means to tailor dielectric s...
We study the Wigner crystallization on partially filled topological flat bands of kagome, honeycomb ...
This dissertation attempts to illuminate and expand our understanding of charge dynamics in a number...
Copyright © 2020 American Chemical Society. The interaction between off-resonant laser pulses and ex...
This paper shows how terahertz light can drive ultrafast topological phase transitions in monolayer ...
Copyright © 2020 American Chemical Society. The interaction between off-resonant laser pulses and ex...
Abstract This paper shows how terahertz light can drive ultrafast topological phase transitions in m...
The existence of Wigner crystallization, one of the most significant hallmarks of strong electron co...
Quantum-mechanical phenomena underpin the behaviour of quantum materials at the microscopic level. T...