Quantum error mitigated classical shadows
Classical shadows enable us to learn many properties of a quantum state ρ with very few
measurements. However, near-term and early fault-tolerant quantum computers will only be …
measurements. However, near-term and early fault-tolerant quantum computers will only be …
Group-theoretic error mitigation enabled by classical shadows and symmetries
Estimating expectation values is a key subroutine in quantum algorithms. Near-term
implementations face two major challenges: a limited number of samples required to learn a …
implementations face two major challenges: a limited number of samples required to learn a …
Tailored and externally corrected coupled cluster with quantum inputs
We propose to use wave function overlaps obtained from a quantum computer as inputs for
the classical split-amplitude techniques, tailored and externally corrected coupled cluster, to …
the classical split-amplitude techniques, tailored and externally corrected coupled cluster, to …
Programmable simulations of molecules and materials with reconfigurable quantum processors
Simulations of quantum chemistry and quantum materials are believed to be among the
most important applications of quantum information processors. However, realizing practical …
most important applications of quantum information processors. However, realizing practical …
Quantum Information Processing, Sensing, and Communications: Their Myths, Realities, and Futures
The recent advances in quantum information processing, sensing, and communications are
surveyed with the objective of identifying the associated knowledge gaps and formulating a …
surveyed with the objective of identifying the associated knowledge gaps and formulating a …
Classical and quantum cost of measurement strategies for quantum-enhanced auxiliary field quantum monte carlo
Quantum-enhanced auxiliary field quantum Monte Carlo (QC-AFQMC) uses output from a
quantum computer to increase the accuracy of its classical counterpart. The algorithm …
quantum computer to increase the accuracy of its classical counterpart. The algorithm …
Probabilistic interpolation of quantum rotation angles
Quantum computing requires a universal set of gate operations; regarding gates as
rotations, any rotation angle must be possible. However a real device may only be capable …
rotations, any rotation angle must be possible. However a real device may only be capable …
Sparse probabilistic synthesis of quantum operations
B Koczor - arxiv preprint arxiv:2402.15550, 2024 - arxiv.org
Successful implementations of quantum technologies require protocols and algorithms that
use as few quantum resources as possible. However, many important quantum operations …
use as few quantum resources as possible. However, many important quantum operations …
Can shallow quantum circuits scramble local noise into global white noise?
Shallow quantum circuits are believed to be the most promising candidates for achieving
early practical quantum advantage—this has motivated the development of a broad range of …
early practical quantum advantage—this has motivated the development of a broad range of …
Real classical shadows
Efficiently learning expectation values of a quantum state using classical shadow
tomography has become a fundamental task in quantum information theory. In a classical …
tomography has become a fundamental task in quantum information theory. In a classical …