Text

We study hybrid quantum material systems combining superconductors, magnets, and semiconductors. In such structures, when interfaces are atomically precise, the superconducting wavefunction permeates the entire system, giving rise to emergent quantum states with properties no single constituent material possesses. Beyond hybrid systems, our research spans exotic magnetism and correlated states in quasicrystals.

The materials growth of is performed in a two-chamber MBE (Karl Eberl Octoplus 4000) which hosts two chambers dedicated to high-mobility III-V heterostructures and magnetic materials. Device fabrication is carried out using high-resolution electron beam lithography and a fully equipped FIB/SEM (FEI Scios 2). Quantum transport measurements are performed in cryogenic setups down to millikelvin temperatures.

Students working under an Agreement to Perform Work, Lucie Krejčová and Matěj Ševčík, also contribute to the activities of the Quantum Materials Group.