Random quantum circuits
Quantum circuits—built from local unitary gates and local measurements—are a new
playground for quantum many-body physics and a tractable setting to explore universal …
playground for quantum many-body physics and a tractable setting to explore universal …
Biology and medicine in the landscape of quantum advantages
BA Cordier, NPD Sawaya… - Journal of the …, 2022 - royalsocietypublishing.org
Quantum computing holds substantial potential for applications in biology and medicine,
spanning from the simulation of biomolecules to machine learning methods for subtyping …
spanning from the simulation of biomolecules to machine learning methods for subtyping …
[HTML][HTML] The future of quantum computing with superconducting qubits
For the first time in history, we are seeing a branching point in computing paradigms with the
emergence of quantum processing units (QPUs). Extracting the full potential of computation …
emergence of quantum processing units (QPUs). Extracting the full potential of computation …
Hierarchy of topological order from finite-depth unitaries, measurement, and feedforward
N Tantivasadakarn, A Vishwanath, R Verresen - PRX Quantum, 2023 - APS
Long-range entanglement—the backbone of topologically ordered states—cannot be
created in finite time using local unitary circuits, or, equivalently, adiabatic state preparation …
created in finite time using local unitary circuits, or, equivalently, adiabatic state preparation …
Assessing requirements to scale to practical quantum advantage
While quantum computers promise to solve some scientifically and commercially valuable
problems thought intractable for classical machines, delivering on this promise will require a …
problems thought intractable for classical machines, delivering on this promise will require a …
Anyon condensation and the color code
MS Kesselring, JC Magdalena de la Fuente… - PRX Quantum, 2024 - APS
The manipulation of topologically ordered phases of matter to encode and process quantum
information forms the cornerstone of many approaches to fault-tolerant quantum computing …
information forms the cornerstone of many approaches to fault-tolerant quantum computing …
Pymatching: A python package for decoding quantum codes with minimum-weight perfect matching
O Higgott - ACM Transactions on Quantum Computing, 2022 - dl.acm.org
This article introduces PyMatching, a fast open-source Python package for decoding
quantum error-correcting codes with the minimum-weight perfect matching (MWPM) …
quantum error-correcting codes with the minimum-weight perfect matching (MWPM) …
Floquet codes without parent subsystem codes
M Davydova, N Tantivasadakarn, S Balasubramanian - PRX Quantum, 2023 - APS
We propose a new class of error-correcting dynamic codes in two and three dimensions that
has no explicit connection to any parent subsystem code. The two-dimensional code, which …
has no explicit connection to any parent subsystem code. The two-dimensional code, which …
[HTML][HTML] Relaxing hardware requirements for surface code circuits using time-dynamics
The typical time-independent view of quantum error correction (QEC) codes hides significant
freedom in the decomposition into circuits that are executable on hardware. Using the …
freedom in the decomposition into circuits that are executable on hardware. Using the …
Adiabatic paths of Hamiltonians, symmetries of topological order, and automorphism codes
The recent “honeycomb code” is a fault-tolerant quantum memory defined by a sequence of
checks, which implements a nontrivial automorphism of the toric code. We argue that a …
checks, which implements a nontrivial automorphism of the toric code. We argue that a …