5 papers
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…
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…
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…
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…
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…