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Physics

D-Index
84
Citations
26186
World Ranking
2676
National Ranking
50

Overview

Enrique Solano is affiliated with the University of the Basque Country in Spain and has made contributions primarily in the fields of computer science and physics and astronomy. Their research focuses heavily on quantum computing, quantum information, and related disciplines.

The scientist's work spans several main topics, including:

  • Quantum Information and Cryptography
  • Quantum Computing Algorithms and Architecture
  • Quantum and Electron Transport Phenomena
  • Neural Networks and Reservoir Computing
  • Quantum Mechanics and Applications
  • Quantum-Dot Cellular Automata
  • Quantum Optics and Atomic Interactions

Enrique Solano has authored numerous papers, some of the most recent and cited ones are:

  • Digital-analog quantum computation, 2020, Physical Review A
  • Digitized-counterdiabatic quantum approximate optimization algorithm, 2022, Physical Review Research
  • Quantum algorithm for solving linear differential equations: Theory and experiment, 2020, Physical Review A
  • Digitized Counterdiabatic Quantum Algorithm for Protein Folding, 2023, Physical Review Applied
  • Quantum Simulation of the Bosonic Creutz Ladder with a Parametric Cavity, 2021, Physical Review Letters

The scientist frequently publishes in several venues, notably:

  • arXiv (Cornell University)
  • Physical Review A
  • Physical Review Research
  • Physical Review Applied
  • Quantum Science and Technology

Enrique Solano collaborates regularly with several researchers in the field. Frequent coauthors include:

  • Narendra N. Hegade
  • F. Albarrán-Arriagada
  • Lucas Lamata
  • Xi Chen
  • Alejandro Gomez Cadavid

The scientist's work encompasses multiple subfields of study, such as:

  • Artificial Intelligence
  • Atomic and Molecular Physics, and Optics
  • Electrical and Electronic Engineering
  • Computational Theory and Mathematics
  • General Health Professions

Best Publications

  • Circuit quantum electrodynamics in the ultrastrong-coupling regime

    T. Niemczyk;F. Deppe;H. Huebl;E. P. Menzel

  • Ultrastrong coupling regimes of light-matter interaction

    P. Forn-Díaz;L. Lamata;E. Rico;J. Kono

  • Quantum simulation of the Dirac equation

    R. Gerritsma;R. Gerritsma;G. Kirchmair;G. Kirchmair;F. Zähringer;F. Zähringer;E. Solano;E. Solano

  • Observation of the Bloch-Siegert shift in a qubit-oscillator system in the ultrastrong coupling regime

    P. Forn-Díaz;J. Lisenfeld;J. Lisenfeld;D. Marcos;J. J. García-Ripoll

  • Realization of a quantum walk with one and two trapped ions.

    F. Zähringer;F. Zähringer;G. Kirchmair;G. Kirchmair;R. Gerritsma;R. Gerritsma;E. Solano;E. Solano

  • Deep Strong Coupling Regime of the Jaynes-Cummings Model

    Jorge Casanova;Guillermo Romero;Ion Lizuain;Juan José García-Ripoll

  • Digitized adiabatic quantum computing with a superconducting circuit

    R. Barends;A. Shabani;L. Lamata;J. Kelly

  • Strong-driving-assisted multipartite entanglement in cavity QED.

    Enrique Solano;Girish S. Agarwal;Herbert Walther

  • Sudden birth versus sudden death of entanglement in multipartite systems.

    C. E. López;G. Romero;F. Lastra;E. Solano;E. Solano

  • Quantum-classical computation of Schwinger model dynamics using quantum computers

    N. Klco;E. F. Dumitrescu;A. J. McCaskey;T. D. Morris

  • Dirac equation and quantum relativistic effects in a single trapped ion

    Lucas Lamata;Juan León;T. Schätz;E. Solano

  • Sequential generation of entangled multiqubit states.

    C Schon;E Solano;E Solano;Frank Verstraete;Frank Verstraete;JI Cirac

  • Digital quantum simulation of fermionic models with a superconducting circuit.

    R. Barends;L. Lamata;J. Kelly;J. Kelly;L. García-Álvarez

  • Experimental observation of four-photon entangled Dicke state with high fidelity.

    Nikolai Kiesel;Christian Schmid;Géza Tóth;Enrique Solano

  • DETERMINISTIC BELL STATES AND MEASUREMENT OF THE MOTIONAL STATE OF TWO TRAPPED IONS

    E. Solano;E. Solano;R. L. de Matos Filho;N. Zagury

  • Quantum simulation of the Klein paradox with trapped ions.

    Rene Gerritsma;Rene Gerritsma;B.P. Lanyon;B.P. Lanyon;G. Kirchmair;G. Kirchmair;F. Zähringer;F. Zähringer

  • Two-photon probe of the Jaynes–Cummings model and controlled symmetry breaking in circuit QED

    Frank Deppe;Matteo Mariantoni;E. P. Menzel;A. Marx

  • From transistor to trapped-ion computers for quantum chemistry

    Man hong Yung;J. Casanova;A. Mezzacapo;Jarrod Ryan McClean

  • Digital Quantum Simulation of Spin Models with Circuit Quantum Electrodynamics

    Y. Salathé;M. Mondal;M. Oppliger;J. Heinsoo

  • Ultrafast Quantum Gates in Circuit QED

    G. Romero;D. Ballester;Y. M. Wang;V. Scarani

Frequent Co-Authors

Rudolf Gross
Rudolf Gross Technical University of Munich
Herbert Walther
Herbert Walther Max Planck Society
Jean-Laurent Casanova
Jean-Laurent Casanova The University of Texas Southwestern Medical Center
Yasunobu Nakamura
Yasunobu Nakamura University of Tokyo
Girish S. Agarwal
Girish S. Agarwal Texas A&M University
John M. Martinis
John M. Martinis University of California, Santa Barbara
Rainer Blatt
Rainer Blatt University of Innsbruck
Ignasi Ribas
Ignasi Ribas Institute of Space Sciences
Martin B. Plenio
Martin B. Plenio University of Ulm
D. Montes
D. Montes Complutense University of Madrid

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