Excitons in atomically thin semiconductors necessarily lie close to a surface, and therefore their properties are expected to be strongly influenced by the surrounding dielectric environment. However, systematic studies exploring this role are challenging, in part because the most readily accessible exciton parameterthe exciton’s optical transition energyis largely <i>un</i>affected by the surrounding medium. Here we show that the role of the dielectric environment is revealed through its systematic influence on the <i>size</i> of the exciton, which can be directly measured via the diamagnetic shift of the exciton transition in high magnetic fields. Using exfoliated WSe<sub>2</sub> monolayers affixed to single-mode optical fibers, we tune...
This is the published version. Copyright © 2014 American Physical SocietyExciton binding energy and ...
The vast amount of different two-dimensional (2D) materials and the possibility of combining them in...
This is the published version. Copyright © 2014 American Physical SocietyExciton binding energy and ...
In semiconductor physics, many essential optoelectronic material parameters can be experimentally re...
In semiconductor physics, many essential optoelectronic material parameters can be experimentally re...
Heterojunctions are the backbone of established semiconductor technology. The highly desirable relia...
Screening due to the surrounding dielectric medium reshapes the electron-hole interaction potential ...
The optical properties of monolayer materials can be indirectly tuned by the dielectric properties o...
We experimentally study the radii of excitons in hBN-encapsulated WS(2 )monolayers by means of magne...
We experimentally study the radii of excitons in hBN-encapsulated WS(2 )monolayers by means of magne...
We experimentally study the radii of excitons in hBN-encapsulated WS(2 )monolayers by means of magne...
Two-dimensional transition metal dichalcogenides (TMDCs) have spurred excitement for potential appli...
Monolayer transition metal dichalcogenide crystals, as direct-gap materials with strong light-matter...
We report on large exciton tuning in WSe$_2$ monolayers via substrate induced non-degenerate doping....
In bulk and quantum-confined semiconductors, magneto-optical studies have historically played an ess...
This is the published version. Copyright © 2014 American Physical SocietyExciton binding energy and ...
The vast amount of different two-dimensional (2D) materials and the possibility of combining them in...
This is the published version. Copyright © 2014 American Physical SocietyExciton binding energy and ...
In semiconductor physics, many essential optoelectronic material parameters can be experimentally re...
In semiconductor physics, many essential optoelectronic material parameters can be experimentally re...
Heterojunctions are the backbone of established semiconductor technology. The highly desirable relia...
Screening due to the surrounding dielectric medium reshapes the electron-hole interaction potential ...
The optical properties of monolayer materials can be indirectly tuned by the dielectric properties o...
We experimentally study the radii of excitons in hBN-encapsulated WS(2 )monolayers by means of magne...
We experimentally study the radii of excitons in hBN-encapsulated WS(2 )monolayers by means of magne...
We experimentally study the radii of excitons in hBN-encapsulated WS(2 )monolayers by means of magne...
Two-dimensional transition metal dichalcogenides (TMDCs) have spurred excitement for potential appli...
Monolayer transition metal dichalcogenide crystals, as direct-gap materials with strong light-matter...
We report on large exciton tuning in WSe$_2$ monolayers via substrate induced non-degenerate doping....
In bulk and quantum-confined semiconductors, magneto-optical studies have historically played an ess...
This is the published version. Copyright © 2014 American Physical SocietyExciton binding energy and ...
The vast amount of different two-dimensional (2D) materials and the possibility of combining them in...
This is the published version. Copyright © 2014 American Physical SocietyExciton binding energy and ...