Using first-principles GW Bethe-Salpeter equation calculations and the k . p theory, we unambiguously show that for two-dimensional (2D) semiconductors, there exists a robust linear scaling law between the quasiparticle band gap (E-g) and the exciton binding energy (E-b), namely, E-b approximate to E-g/4, regardless of their lattice configuration, bonding characteristic, as well as the topological property. Such a parameter-free universality is never observed in their three-dimensional counterparts. By deriving a simple expression for the 2D polarizability merely with respect to E-g, and adopting the screened hydrogen model for Eb, the linear scaling law can be deduced analytically. This work provides an opportunity to better understand the...
Semiconducting transition metal dichalcogenides (TMDs) are 2D sheet-like materials with atomic scale...
External fields are a powerful tool to probe optical excitations in a material. The linear energy sh...
van der Waals two-dimensional (2D) semiconductors have emerged as a class of materials with promisin...
In this paper we present an alternative G0W0-BSE procedure, suitable for calculation of the quasi-pa...
The binding energies of excitons bound to neutral donors in two-dimensional (2D) semiconductors with...
Quasi-two-dimensional (quasi-2D) semiconductors are the subject of intense research interest as plat...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
We examine the impact of quantum confinement on the interaction potential between two charges in two...
In this thesis, I discuss the understanding and control of the optical properties of quasi-two-dimen...
It is well known that the ambient environment can dramatically renormalize the quasiparticle gap and...
van der Waals two-dimensional (2D) semiconductors have emerged as a class of materials with promisin...
The ability to control the size of the electronic bandgap is an integral part of solid-state technol...
We studied the exciton properties in double layers of transition metal dichalcogenides (TMDs) with a...
Semiconducting transition metal dichalcogenides (TMDs) are 2D sheet-like materials with atomic scale...
External fields are a powerful tool to probe optical excitations in a material. The linear energy sh...
van der Waals two-dimensional (2D) semiconductors have emerged as a class of materials with promisin...
In this paper we present an alternative G0W0-BSE procedure, suitable for calculation of the quasi-pa...
The binding energies of excitons bound to neutral donors in two-dimensional (2D) semiconductors with...
Quasi-two-dimensional (quasi-2D) semiconductors are the subject of intense research interest as plat...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
Excitonic effects play a particularly important role in the optoelectronic behavior of two-dimension...
Atomically thin semiconductors from the transition metal dichalcogenide family are materials in whic...
We examine the impact of quantum confinement on the interaction potential between two charges in two...
In this thesis, I discuss the understanding and control of the optical properties of quasi-two-dimen...
It is well known that the ambient environment can dramatically renormalize the quasiparticle gap and...
van der Waals two-dimensional (2D) semiconductors have emerged as a class of materials with promisin...
The ability to control the size of the electronic bandgap is an integral part of solid-state technol...
We studied the exciton properties in double layers of transition metal dichalcogenides (TMDs) with a...
Semiconducting transition metal dichalcogenides (TMDs) are 2D sheet-like materials with atomic scale...
External fields are a powerful tool to probe optical excitations in a material. The linear energy sh...
van der Waals two-dimensional (2D) semiconductors have emerged as a class of materials with promisin...