8 citations · 13 across the 3 of their papers we have counts for
6 papers · 1 filter
A perturbative non-Markovian treatment to low-temperature spin decoherence
Timothy J. Krogmeier, Anthony W. Schlimgen, Kade Head-Marsden
Molecular spins are promising candidates for quantum information science, leveraging coherent electronic spin states for quantum sensing and computation. However, the practical app…
Preserving fermionic statistics for single-particle approximations in microscopic quantum master equations
Mikayla Z. Fahrenbruch, Anthony W. Schlimgen, Kade Head-Marsden
Microscopic master equations have gained traction for the dissipative treatment of molecular spin and solid-state systems for quantum technologies. Single particle approximations a…
Quantum Simulation of Two-Level -Symmetric Systems Using Hermitian Hamiltonians
Maryam Abbasi, Koray Aydogan, Anthony W. Schlimgen +1
Parity-time ()-symmetric Hamiltonians exhibit non-unitary dynamical evolution while maintaining real spectra, and offer unique approaches to quantum sensing and entanglement ge…
Orbital Entanglement and The Double -Shell Effect in Binary Transition Metal Molecules
Julianne S. Lampert, Timothy J. Krogmeier, Anthony W. Schlimgen +1
Accurate modeling of transition metal-containing compounds is of great interest due to their wide-ranging and significant applications. These systems present several challenges fro…
Stabilizing steady-state properties of open quantum systems with parameter engineering
Koray Aydoğan, Anthony W. Schlimgen, Kade Head-Marsden
Realistic quantum systems are affected by environmental loss, which is often seen as detrimental for applications in quantum technologies. Alternatively, weak coupling to an enviro…
Unboxing Quantum Black Box Models: Learning Non-Markovian Dynamics
Stefan Krastanov, Kade Head-Marsden, Sisi Zhou +3
Characterizing the memory properties of the environment has become critical for the high-fidelity control of qubits and other advanced quantum systems. However, current non-Markovi…