35 citations · 111 across the 11 of their papers we have counts for
8 papers · 2 filters
Interactive Protocols for Classically-Verifiable Quantum Advantage
Daiwei Zhu, Gregory D. Kahanamoku-Meyer, Laura Lewis +15
Achieving quantum computational advantage requires solving a classically intractable problem on a quantum device. Natural proposals rely upon the intrinsic hardness of classically…
Detecting Qubit-coupling Faults in Ion-trap Quantum Computers
Andrii O. Maksymov, Jason Nguyen, Vandiver Chaplin +2
Ion-trap quantum computers offer a large number of possible qubit couplings, each of which requires individual calibration and can be misconfigured. To enhance the duty cycle of an…
Cross-Platform Comparison of Arbitrary Quantum Computations
Daiwei Zhu, Ze-Pei Cian, Crystal Noel +14
As we approach the era of quantum advantage, when quantum computers (QCs) can outperform any classical computer on particular tasks, there remains the difficult challenge of how to…
Lattice Quantum Chromodynamics and Electrodynamics on a Universal Quantum Computer
Angus Kan, Yunseong Nam
It is widely anticipated that a large-scale quantum computer will offer an evermore accurate simulation of nature, opening the floodgates for exciting scientific breakthroughs and…
Efficient quantum programming using EASE gates on a trapped-ion quantum computer
Nikodem Grzesiak, Andrii Maksymov, Pradeep Niroula +1
Parallel operations in conventional computing have proven to be an essential tool for efficient and practical computation, and the story is not different for quantum computing. Ind…
Two-qubit gates in a trapped-ion quantum computer by engineering motional modes
Ming Li, Jason Amini, Yunseong Nam
A global race towards developing a gate-based, universal quantum computer that one day promises to unlock the never before seen computational power has begun and the biggest challe…