Search Results - "Lozano, D. Perez"

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  1. 1

    Advanced CMOS manufacturing of superconducting qubits on 300 mm wafers by Van Damme, J., Massar, S., Acharya, R., Ivanov, Ts, Perez Lozano, D., Canvel, Y., Demarets, M., Vangoidsenhoven, D., Hermans, Y., Lai, J. G., Vadiraj, A. M., Mongillo, M., Wan, D., De Boeck, J., Potočnik, A., De Greve, K.

    Published in Nature (London) (03-10-2024)
    “…The development of superconducting qubit technology has shown great potential for the construction of practical quantum computers 1 , 2 . As the complexity of…”
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    Journal Article
  2. 2

    Path toward manufacturable superconducting qubits with relaxation times exceeding 0.1 ms by Verjauw, J., Acharya, R., Van Damme, J., Ivanov, Ts, Lozano, D. Perez, Mohiyaddin, F. A., Wan, D., Jussot, J., Vadiraj, A. M., Mongillo, M., Heyns, M., Radu, I., Govoreanu, B., Potočnik, A.

    Published in npj quantum information (09-08-2022)
    “…As the superconducting qubit platform matures towards ever-larger scales in the race towards a practical quantum computer, limitations due to qubit…”
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    Journal Article
  3. 3

    Argon milling induced decoherence mechanisms in superconducting quantum circuits by Van Damme, J, Ivanov, Ts, Favia, P, Conard, T, Verjauw, J, Acharya, R, Lozano, D. Perez, Raes, B, Van de Vondel, J, Vadiraj, A. M, Mongillo, M, Wan, D, De Boeck, J, Potočnik, A, De Greve, K

    Published 07-02-2023
    “…The fabrication of superconducting circuits requires multiple deposition, etch and cleaning steps, each possibly introducing material property changes and…”
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  4. 4

    Path toward manufacturable superconducting qubits with relaxation times exceeding 0.1 ms by Verjauw, J, Acharya, R, Van Damme, J, Ivanov, Ts, Lozano, D. Perez, Mohiyaddin, F. A, Wan, D, Jussot, J, Vadiraj, A. M, Mongillo, M, Heyns, M, Radu, I, Govoreanu, B, Potočnik, A

    Published 21-02-2022
    “…npj Quantum Inf 8, 93 (2022) As the superconducting qubit platform matures towards ever-larger scales in the race towards a practical quantum computer,…”
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    Journal Article
  5. 5

    Multiplexed superconducting qubit control at millikelvin temperatures with a low-power cryo-CMOS multiplexer by Acharya, R., Brebels, S., Grill, A., Verjauw, J., Ivanov, Ts, Lozano, D. Perez, Wan, D., Van Damme, J., Vadiraj, A. M., Mongillo, M., Govoreanu, B., Craninckx, J., Radu, I. P., De Greve, K., Gielen, G., Catthoor, F., Potočnik, A.

    Published in Nature electronics (01-11-2023)
    “…Large-scale superconducting quantum computers require the high-fidelity control and readout of large numbers of qubits at millikelvin temperatures, resulting…”
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    Journal Article
  6. 6

    High-Performance 300mm Integrated Superconducting Resonators for Quantum Computing Applications by Mongillo, M., Potocnik, A., Verjauw, J., Mohiyaddin, F.A., Ivanov, T., Acharya, R, Piao, X., Lozano, D.Perez, Wan, D., Pacco, A., Jussot, J., Souriau, L., Vadiraj, A. M., Swerts, J., Couet, S, Goux, L., Govoreanu, B., Iuliana, P., Radu

    “…We report on the electrical performance of integrated superconducting microwave resonators at millikelvin temperatures. The resonators were successfully…”
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    Conference Proceeding
  7. 7
  8. 8

    The miniJPAS survey: a preview of the Universe in 56 colours by Bonoli, S, Varela, J, Ramió, H. Vázquez, Dupke, R. A, Cristóbal-Hornillos, D, Delgado, R. M. González, López-Sanjuan, C, Muniesa, D. J, Civera, T, Ederoclite, A, Hernán-Caballero, A, Marra, V, Cortesi, A, Cypriano, E. S, Daflon, S, de Amorim, A. L, Diego, J. M, Martínez-Solaeche, G, Pérez, E, Prada, F, Alcaniz, J, Alvarez-Candal, A, Roig, F, Siffert, B. B, Taylor, K, Moles, M, Carneiro, S, Resco, M. Aparicio, Carrasco, E. R, Castro, T, Fernandes, R. Cid, Coelho, P, de Melo, R. B, Ferrari, F, Finoguenov, A, García-Benito, R, Kitaura, F. S, Laur, J, Lucatelli, G, Maturi, M, Quartin, M, Pigozzo, C, Rodrìguez-Martìn, J. E, Salzano, V, Tempel, E, Zitrin, A, Díaz-Martín, M. C, López-Alegre, G, López-Sainz, A, Yanes-Díaz, A, Ibañez, J. Abril, Bravo, J. L Antón, Ferrer, R. Bello, Casino, J. M, Castillo, J, Cuesta, L, Lopez-Martinez, F, Sacristán, N. Maícas, Moreno-Signes, A, Llano, S. Rodríguez, Andrade, U, Akras, S, Arnalte-Mur, P, Barbosa, C. E, Jiménez, J. Beltrán, Benetti, M, Bengaly, C. A. P, Fernandes, M. Borges, Bregman, J. N, Bruzual, G, Carvano, J. M, Casarini, L, Chies-Santos, A. L, de Carvalho, G. Coutinho, Dimauro, P, Figueruelo, D, González-Serrano, J. I, Gurung-López, S, Izquierdo-Villalba, D, Kehrig, C, Kirkpatrick, C. C, Marcos-Caballero, A, Martínez-González, E, Martínez-Somonte, G, Oliveira, N, Orsi, A. A, Overzier, R. A, Penna-Lima, M, Reis, R. R. R, Spinoso, D, Tsujikawa, S, Vitorelli, A. Z, Yuan, H. B, Arroyo-Polonio, A, Dantas, M. L. L, Gonçalves, R. S, Gonzalez, A. H, Landim, R. G, Rodriguez-Espinosa, J. M, da Costa, S. Santos

    Published 09-07-2020
    “…A&A 653, A31 (2021) The Javalambre-Physics of the Accelerating Universe Astrophysical Survey (J-PAS) will soon start to scan thousands of square degrees of the…”
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    Journal Article