In semiconductor physics, many essential optoelectronic material parameters can be experimentally revealed via optical spectroscopy in sufficiently large magnetic fields. For monolayer transition-metal dichalcogenide semiconductors, this field scale is substantial-tens of teslas or more-due to heavy carrier masses and huge exciton binding energies. Here we report absorption spectroscopy of monolayer [Formula: see text], and [Formula: see text] in very high magnetic fields to 91 T. We follow the diamagnetic shifts and valley Zeeman splittings of not only the exciton's [Formula: see text] ground state but also its excited [Formula: see text] Rydberg states. This provides a direct experimental measure of the effective (reduced) exciton ma...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
International audienceOptical spectroscopy in high magnetic fields B ≤ 65 T is used to reveal the ve...
International audienceOptical spectroscopy in high magnetic fields B ≤ 65 T is used to reveal the ve...
In semiconductor physics, many essential optoelectronic material parameters can be experimentally re...
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...
Excitons in atomically thin semiconductors necessarily lie close to a surface, and therefore their p...
Optical spectroscopy in high magnetic fields <i>B</i> ≤ 65 T is used to reveal the very different na...
International audienceExcitons with binding energies of a few hundreds of meV control the optical pr...
Monolayer two-dimensional transition metal dichalcogenides (2D TMDs) represent a class of atomically...
In bulk and quantum-confined semiconductors, magneto-optical studies have historically played an ess...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Transition metal dichalcogenides (TMDs) monolayers such as MX2 (M = Mo, W; X = S, Se) feature strong...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
International audienceOptical spectroscopy in high magnetic fields B ≤ 65 T is used to reveal the ve...
International audienceOptical spectroscopy in high magnetic fields B ≤ 65 T is used to reveal the ve...
In semiconductor physics, many essential optoelectronic material parameters can be experimentally re...
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...
Excitons in atomically thin semiconductors necessarily lie close to a surface, and therefore their p...
Optical spectroscopy in high magnetic fields <i>B</i> ≤ 65 T is used to reveal the very different na...
International audienceExcitons with binding energies of a few hundreds of meV control the optical pr...
Monolayer two-dimensional transition metal dichalcogenides (2D TMDs) represent a class of atomically...
In bulk and quantum-confined semiconductors, magneto-optical studies have historically played an ess...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Transition metal dichalcogenides (TMDs) monolayers such as MX2 (M = Mo, W; X = S, Se) feature strong...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
Beginning with the discovery of graphene, two-dimensional materials have amassed a strong i...
International audienceOptical spectroscopy in high magnetic fields B ≤ 65 T is used to reveal the ve...
International audienceOptical spectroscopy in high magnetic fields B ≤ 65 T is used to reveal the ve...