collaborators

5 papers

quant-ph2025

Topological Quantum Compilation Using Mixed-Integer Programming

Pavel Rytir, Phillip C. Burke, Christos Aravanis +2

We introduce the Mixed-Integer Quadratically Constrained Quadratic Programming framework for the quantum compilation problem and apply it in the context of topological quantum comp…

cond-mat.str-el2025

Non-Hermitian Numerical Renormalization Group: Solution of the non-Hermitian Kondo model

Phillip C. Burke, Andrew K. Mitchell

Non-Hermitian (NH) Hamiltonians describe open quantum systems, nonequilibrium dynamics, and dissipative processes. Although a rich range of single-particle NH physics has been unco…

quant-ph2025

Taking the temperature of quantum many-body scars

Phillip C. Burke, Shane Dooley

A quantum many-body scar is an eigenstate of a chaotic many-body Hamiltonian that exhibits two seemingly incongruous properties: its energy eigenvalue corresponds to a high tempera…

quant-ph2024

Topological quantum compilation of two-qubit gates

Phillip C. Burke, Christos Aravanis, Johannes Aspman +2

We investigate the topological quantum compilation of two-qubit operations within a system of Fibonacci anyons. Our primary goal is to generate gates that are approximately leakage…

quant-ph2024

Structure of the Hamiltonian of mean force

Phillip C. Burke, Goran Nakerst, Masudul Haque

The Hamiltonian of mean force is an effective Hamiltonian that allows a quantum system, non-weakly coupled to an environment, to be written in an effective Gibbs state. We present…