66 citations · 158 across the 9 of their papers we have counts for
6 papers · 1 filter
Quantum computing hardware for HEP algorithms and sensing
M. Sohaib Alam, Sergey Belomestnykh, Nicholas Bornman +37
Quantum information science harnesses the principles of quantum mechanics to realize computational algorithms with complexities vastly intractable by current computer platforms. Ty…
Noise Improvements in Quantum Simulations of sQED using Qutrits
Erik Gustafson
We present an argument for the advantages of using qudits over qubits for scalar Quantum Electrodynamics in d. We measure the mass gap using an out of time correlator as a f…
Measuring NISQ Gate-Based Qubit Stability Using a 1+1 Field Theory and Cycle Benchmarking
Kubra Yeter-Aydeniz, Zachary Parks, Aadithya Nair +5
Some of the most problematic issues that limit the implementation of applications on Noisy Intermediate Scale Quantum (NISQ) machines are the adverse impacts of both incoherent and…
Simulations of Quantum Circuits with Approximate Noise using qsim and Cirq
Sergei V. Isakov, Dvir Kafri, Orion Martin +15
We introduce multinode quantum trajectory simulations with qsim, an open source high performance simulator of quantum circuits. qsim can be used as a backend of Cirq, a Python soft…
Large scale multi-node simulations of gauge theory quantum circuits using Google Cloud Platform
Erik Gustafson, Burt Holzman, James Kowalkowski +12
Simulating quantum field theories on a quantum computer is one of the most exciting fundamental physics applications of quantum information science. Dynamical time evolution of qua…
Prospects for Simulating a Qudit Based Model of (1+1)d Scalar QED
Erik Gustafson
We present a gauge invariant digitization of d scalar quantum electrodynamics for an arbitrary spin truncation for qudit-based quantum computers. We provide a construction o…