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quant-ph2024

Probing critical states of matter on a digital quantum computer

Reza Haghshenas, Eli Chertkov, Matthew DeCross +11

Although quantum mechanics underpins the microscopic behavior of all materials, its effects are often obscured at the macroscopic level by thermal fluctuations. A notable exception…

quant-ph2024

Experiments with the 4D Surface Code on a QCCD Quantum Computer

Noah Berthusen, Joan Dreiling, Cameron Foltz +9

Single-shot quantum error correction has the potential to speed up quantum computations by removing the need for multiple rounds of syndrome extraction in order to be fault-toleran…

quant-ph2024

Demonstration of logical qubits and repeated error correction with better-than-physical error rates

A. Paetznick, M. P. da Silva, C. Ryan-Anderson +29

The promise of quantum computers hinges on the ability to scale to large system sizes, e.g., to run quantum computations consisting of more than 100 million operations fault-tolera…

quant-ph2024

Qutrit Toric Code and Parafermions in Trapped Ions

Mohsin Iqbal, Anasuya Lyons, Chiu Fan Bowen Lo +16

The development of programmable quantum devices can be measured by the complexity of manybody states that they are able to prepare. Among the most significant are topologically ord…

quant-ph2024

Experimental Demonstration of Break-Even for the Compact Fermionic Encoding

Ramil Nigmatullin, Kevin Hemery, Khaldoon Ghanem +8

The utility of solving the Fermi-Hubbard model has been estimated in the billions of dollars. Digital quantum computers can in principle address this task, but have so far been lim…

quant-ph2024

The computational power of random quantum circuits in arbitrary geometries

Matthew DeCross, Reza Haghshenas, Minzhao Liu +49

Empirical evidence for a gap between the computational powers of classical and quantum computers has been provided by experiments that sample the output distributions of two-dimens…