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20172022
most citedQuantum Simulation on Noisy Superconducting Quantum Computers

6 citations · 15 across the 5 of their papers we have counts for

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quant-ph20226 cited

Quantum Simulation on Noisy Superconducting Quantum Computers

Kaelyn J. Ferris, A. J. Rasmusson, Nicholas T. Bronn +1

Quantum simulation is a potentially powerful application of quantum computing, holding the promise to be able to emulate interesting quantum systems beyond the reach of classical c…

quant-ph20223 cited

Summary: Chicago Quantum Exchange (CQE) Pulse-level Quantum Control Workshop

Kaitlin N. Smith, Gokul Subramanian Ravi, Thomas Alexander +14

Quantum information processing holds great promise for pushing beyond the current frontiers in computing. Specifically, quantum computation promises to accelerate the solving of ce…

quant-ph2021

Simulating the dynamics of braiding of Majorana zero modes using an IBM quantum computer

John P. T. Stenger, Nicholas T. Bronn, Daniel J. Egger +1

We simulate the dynamics of braiding Majorana zero modes on an IBM Quantum computer. We find the native quantum gates introduce too much noise to observe braiding. Instead, we use…

quant-ph20192 cited

Real-time decoding of stabilizer measurements in a bit-flip code

Diego Ristè, Luke C. G. Govia, Brian Donovan +5

Although qubit coherence times and gate fidelities are continuously improving, logical encoding is essential to achieve fault tolerance in quantum computing. In most encoding schem…

quant-ph2018

Active protection of a superconducting qubit with an interferometric Josephson isolator

Baleegh Abdo, Nicholas T. Bronn, Oblesh Jinka +8

Nonreciprocal microwave devices play several critical roles in high-fidelity, quantum-nondemolition (QND) measurement schemes. They separate input from output, impose unidirectiona…