11 citations · 18 across the 6 of their papers we have counts for
7 papers
Hybrid Method of Efficient Simulation of Physics Applications for a Quantum Computer
Carla Rieger, Albert T. Schmitz, Gehad Salem +5
Quantum chemistry and materials science are among the most promising areas for demonstrating algorithmic quantum advantage and quantum utility due to their inherent quantum mechani…
Running a six-qubit quantum circuit on a silicon spin qubit array
I. Fernández de Fuentes, E. Raymenants, B. Undseth +9
The simplicity of encoding a qubit in the state of a single electron spin and the potential for their integration into industry-standard microchips continue to drive the field of s…
Operating two exchange-only qubits in parallel
Mateusz T. Mądzik, Florian Luthi, Gian Giacomo Guerreschi +38
Semiconductors are among the most promising platforms to implement large-scale quantum computers, as advanced manufacturing techniques allow fabrication of large quantum dot arrays…
PCOAST: A Pauli-based Quantum Circuit Optimization Framework
Jennifer Paykin, Albert T. Schmitz, Mohannad Ibrahim +2
This paper presents the Pauli-based Circuit Optimization, Analysis, and Synthesis Toolchain (PCOAST), a framework for quantum circuit optimizations based on the commutative propert…
Optimization at the Interface of Unitary and Non-unitary Quantum Operations in PCOAST
Albert T. Schmitz, Mohannad Ibrahim, Nicolas P. D. Sawaya +4
The Pauli-based Circuit Optimization, Analysis and Synthesis Toolchain (PCOAST) was recently introduced as a framework for optimizing quantum circuits. It converts a quantum circui…
Efficient Quantum Circuits for Accurate State Preparation of Smooth, Differentiable Functions
Adam Holmes, A. Y. Matsuura
Effective quantum computation relies upon making good use of the exponential information capacity of a quantum machine. A large barrier to designing quantum algorithms for executio…