Diego Wisniacki

Diego Wisniacki

Universidad de Buenos Aires

H-index: 25

Latin America-Argentina

About Diego Wisniacki

Diego Wisniacki, With an exceptional h-index of 25 and a recent h-index of 17 (since 2020), a distinguished researcher at Universidad de Buenos Aires, specializes in the field of Quantum chaos, quantum control.

His recent articles reflect a diverse array of research interests and contributions to the field:

Quantum chaos and quantum phase transitions in Kerr parametric oscillators

Driving superconducting qubits into chaos

Quantum reservoir complexity by Krylov evolution approach

Integrability to chaos transition through Krylov approach for state evolution

Classical approach to equilibrium of out-of-time ordered correlators in mixed systems

Predicting the minimum control time of quantum protocols with artificial neural networks

Assessing the saturation of Krylov complexity as a measure of chaos

Is the saturation of K-complexity a good measure of chaos?

Diego Wisniacki Information

University

Position

Professor Department of Physics FCEyN Argentina

Citations(all)

2117

Citations(since 2020)

1048

Cited By

1556

hIndex(all)

25

hIndex(since 2020)

17

i10Index(all)

61

i10Index(since 2020)

27

Email

University Profile Page

Google Scholar

Diego Wisniacki Skills & Research Interests

Quantum chaos

quantum control

Top articles of Diego Wisniacki

Quantum chaos and quantum phase transitions in Kerr parametric oscillators

Bulletin of the American Physical Society

2024/3/8

Driving superconducting qubits into chaos

Bulletin of the American Physical Society

2024/3/8

Quantum reservoir complexity by Krylov evolution approach

arXiv preprint arXiv:2310.00790

2023/10/1

Integrability to chaos transition through Krylov approach for state evolution

arXiv preprint arXiv:2309.13427

2023/9/23

Classical approach to equilibrium of out-of-time ordered correlators in mixed systems

Physical Review E

2023/6/8

Predicting the minimum control time of quantum protocols with artificial neural networks

Quantum Science and Technology

2023/6/1

Assessing the saturation of Krylov complexity as a measure of chaos

Physical Review E

2023/2/27

Is the saturation of K-complexity a good measure of chaos?

arXiv e-prints

2022/12

Loschmidt-echo approach to error estimation in Krylov-subspace approximation

Physical Review A

2022/10/18

Out-of-time-order correlators and quantum chaos

2022/9/16

Many-body localization and the emergence of quantum darwinism

Entropy

2021/10/20

Sensing quantum chaos through the non-unitary geometric phase

Quantum Science and Technology

2021/9/1

Loschmidt echo approach to Krylov-subspace approximation error estimation

arXiv preprint arXiv:2107.09805

2021/7/20

Krylov-subspace approach for the efficient control of quantum many-body dynamics

Physical Review A

2021/2/11

Diego Wisniacki
Diego Wisniacki

H-Index: 15

Quantum chaos, equilibration, and control in extremely short spin chains

Physical Review E

2021/2/9

Nicolás Mirkin
Nicolás Mirkin

H-Index: 4

Diego Wisniacki
Diego Wisniacki

H-Index: 15

Impact of chaos on precursors of quantum criticality

Physical Review E

2021/12/27

Fourier compression: A customization method for quantum control protocols

Physical Review A

2020/9/16

Esteban Calzetta
Esteban Calzetta

H-Index: 14

Diego Wisniacki
Diego Wisniacki

H-Index: 15

Quantum metrology in a non-Markovian quantum evolution

Physical Review A

2020/8/24

Nicolás Mirkin
Nicolás Mirkin

H-Index: 4

Diego Wisniacki
Diego Wisniacki

H-Index: 15

Signatures of quantum chaos transition in short spin chains

Europhysics Letters

2020/7/21

How small an environment can be to still generate decoherence?

arXiv preprint arXiv:2006.14468

2020/6

Nicolás Mirkin
Nicolás Mirkin

H-Index: 4

Diego Wisniacki
Diego Wisniacki

H-Index: 15

See List of Professors in Diego Wisniacki University(Universidad de Buenos Aires)

Co-Authors

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