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Implementation of ternary Shor's algorithm based on vibrational states of  an ion in anharmonic potential<xref ref-type="fn"  rid="cpb141351fn1">*</xref>
Implementation of ternary Shor's algorithm based on vibrational states of an ion in anharmonic potential<xref ref-type="fn" rid="cpb141351fn1">*</xref>

Quantum random number generation | npj Quantum Information
Quantum random number generation | npj Quantum Information

Slides
Slides

Booklet of abstracts
Booklet of abstracts

PDF) Black holes as mirrors: Quantum information in random subsystems
PDF) Black holes as mirrors: Quantum information in random subsystems

Predicting quantum fidelities using classical shadows (Clifford... |  Download Scientific Diagram
Predicting quantum fidelities using classical shadows (Clifford... | Download Scientific Diagram

Experimental semi-autonomous eigensolver using reinforcement learning |  Scientific Reports
Experimental semi-autonomous eigensolver using reinforcement learning | Scientific Reports

thesis-cannings-2004
thesis-cannings-2004

Probability distribution of fidelity between a random pure state and a... |  Download Scientific Diagram
Probability distribution of fidelity between a random pure state and a... | Download Scientific Diagram

Quantum Computing and the Entanglement Frontier - CornellCast
Quantum Computing and the Entanglement Frontier - CornellCast

PDF) Robustness of adiabatic quantum computation
PDF) Robustness of adiabatic quantum computation

Classification and reconstruction of optical quantum states with deep  neural networks – arXiv Vanity
Classification and reconstruction of optical quantum states with deep neural networks – arXiv Vanity

Error suppression in Hamiltonian based quantum computation using energy  penalties arXiv:1407.1485v1 [quant-ph] 6 Jul 2014
Error suppression in Hamiltonian based quantum computation using energy penalties arXiv:1407.1485v1 [quant-ph] 6 Jul 2014

OSA | Advances in quantum cryptography
OSA | Advances in quantum cryptography

arXiv:2011.01938v2 [quant-ph] 10 Feb 2021
arXiv:2011.01938v2 [quant-ph] 10 Feb 2021

III. Battling decoherence: Quantum error correction and fault-tolerant  quantum computation
III. Battling decoherence: Quantum error correction and fault-tolerant quantum computation

Experimental semi-autonomous eigensolver using reinforcement learning |  Scientific Reports
Experimental semi-autonomous eigensolver using reinforcement learning | Scientific Reports

Quantum computing: pro and con
Quantum computing: pro and con

(321p) Quantum Information and Computation (Preskill 1998-09) (C494A418) |  Time Complexity | Quantum Computing
(321p) Quantum Information and Computation (Preskill 1998-09) (C494A418) | Time Complexity | Quantum Computing

Lecture Notes for Ph219/CS219: Quantum Information and Computation Chapter 4
Lecture Notes for Ph219/CS219: Quantum Information and Computation Chapter 4

Probability density of quantum expectation values
Probability density of quantum expectation values

Experimental semi-autonomous eigensolver using reinforcement learning |  Scientific Reports
Experimental semi-autonomous eigensolver using reinforcement learning | Scientific Reports

Chapter 2 - Preskill "Quantum Computation"
Chapter 2 - Preskill "Quantum Computation"

Quantum phases of matter on a 256-atom programmable quantum simulator |  Nature
Quantum phases of matter on a 256-atom programmable quantum simulator | Nature

arXiv:2011.01938v2 [quant-ph] 10 Feb 2021
arXiv:2011.01938v2 [quant-ph] 10 Feb 2021

PDF) Fault-tolerant quantum computation
PDF) Fault-tolerant quantum computation

Randomized benchmarking for qudit Clifford gates - IOPscience
Randomized benchmarking for qudit Clifford gates - IOPscience

Enhancing quantum control by bootstrapping a quantum processor of 12 qubits  | npj Quantum Information
Enhancing quantum control by bootstrapping a quantum processor of 12 qubits | npj Quantum Information