collaborators

5 papers

cond-mat.mes-hall2025

Time-resolved Charge Detection in Transition Metal Dichalcogenide Quantum Dots

Markus Niese, Michele Masseroni, Clara Scherm +10

We investigate electronic transport through gate-defined quantum dots in molybdenum disulfide MoS using an integrated charge detector. We observe a crossover from two weakly co…

cond-mat.mes-hall2025

Spin-valley 0.7 anomaly in bilayer graphene/WSe quantum point contacts

Jonas D. Gerber, Efe Ersoy, Michele Masseroni +10

We report a well-resolved 0.7 conductance anomaly at in bilayer graphene/WSe quantum point contacts. Proximity-enhanced spin-orbit coupling splits the f…

cond-mat.mes-hall2025

Tunable spin-orbit splitting in bilayer graphene/WSe quantum devices

Jonas D. Gerber, Efe Ersoy, Michele Masseroni +14

Bilayer graphene (BLG)-based quantum devices represent a promising platform for emerging technologies, such as quantum computing and spintronics. However, their intrinsically weak…

cond-mat.mes-hall2025

Spin-Valley Protected Kramers Pair in Bilayer Graphene

Artem O. Denisov, Veronika Reckova, Solenn Cances +11

The intrinsic valley degree of freedom makes bilayer graphene (BLG) a unique platform for semiconductor qubits. The single-carrier quantum dot (QD) ground state exhibits a two-fold…

cond-mat.mes-hall2025

Spin-valley locked excited states spectroscopy in a one-particle bilayer graphene quantum dot

Hadrien Duprez, Solenn Cances, Andraz Omahen +12

Current semiconductor qubits rely either on the spin or on the charge degree of freedom to encode quantum information. By contrast, in bilayer graphene the valley degree of freedom…