collaborators

5 papers

quant-ph2026

Component-Level Inverse Design of Transmon Qubits Using Neural Networks

Olivia Seidel, Firas Abouzahr, Abhishek Chakraborty +11

Designing a superconducting qubit to realize specific Hamiltonian parameters typically requires iterating through a time and compute-intensive forward loop in which the designer ch…

quant-ph2026

Simple, accurate lumped-element models of distributed resonators for superconducting quantum circuits

Elizabeth H. Kunz, Eli M. Levenson-Falk

Superconducting quantum circuit design is reliant on accurately mapping design parameters to a quantum Hamiltonian. Designers typically rely on computationally intensive finite-ele…

quant-ph2025

A Review of Design Concerns in Superconducting Quantum Circuits

Eli M. Levenson-Falk, Sadman Ahmed Shanto

In this short review we describe the process of designing a superconducting circuit device for quantum information applications. We discuss the factors that must be considered to i…

quant-ph2025

Virtual Z gates and symmetric gate compilation

Arian Vezvaee, Vinay Tripathi, Daria Kowsari +2

The virtual Z gate has been established as an important tool for performing quantum gates on various platforms, including but not limited to superconducting systems. Many such plat…

quant-ph2025

Benchmarking quantum gates and circuits

Vinay Tripathi, Daria Kowsari, Kumar Saurav +3

Accurate noise characterization in quantum gates and circuits is vital for the development of reliable quantum simulations for chemically relevant systems and fault-tolerant quantu…