3 citations
- IBM Research - ZurichCH3 papers
- IBM (United States)US3 papers
- Georgia Institute of TechnologyUS2 papers
- Rensselaer Polytechnic InstituteUS2 papers
- Arizona Research CenterUS1 paper
- A.S. Watson (Netherlands)NL1 paper
- Brookhaven National LaboratoryUS1 paper
- ETH ZurichCH1 paper
- Foxconn (Taiwan)TW1 paper
- Freie Universität BerlinDE1 paper
- IBM (Denmark)DK1 paper
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quant-ph2026
Dynamical codes for hardware with noisy readouts
Peter-Jan H. S. Derks, Alex Townsend-Teague, Jens Eisert +3
Dynamical stabilizer codes may offer a practical route to large-scale quantum computation. Such codes are defined by a schedule of error-detecting measurements, which allows for fl…
quant-ph2026★ 1 cited
Quantum Utility in Simulating the Real-time Dynamics of the Fermi-Hubbard Model using Superconducting Quantum Computers
Talal Ahmed Chowdhury, Vladimir Korepin, Vincent R. Pascuzzi +1
The Fermi-Hubbard model is a fundamental model in condensed matter physics that describes strongly correlated electrons. On the other hand, quantum computers are emerging as powerf…
quant-ph2026★ 1 cited
TensorHyper-VQC: A Tensor-Train-Guided Hypernetwork for Robust and Scalable Variational Quantum Computing
Jun Qi, Chao-Han Huck Yang, Pin-Yu Chen +1
Variational Quantum Computing (VQC) faces fundamental scalability barriers, primarily due to barren plateaus and sensitivity to quantum noise. To address these challenges, we intro…