Search Results - "Yan, Haoxiong"

  • Showing 1 - 17 results of 17
Refine Results
  1. 1

    Deterministic multi-qubit entanglement in a quantum network by Zhong, Youpeng, Chang, Hung-Shen, Bienfait, Audrey, Dumur, Étienne, Chou, Ming-Han, Conner, Christopher R., Grebel, Joel, Povey, Rhys G., Yan, Haoxiong, Schuster, David I., Cleland, Andrew N.

    Published in Nature (London) (25-02-2021)
    “…The generation of high-fidelity distributed multi-qubit entanglement is a challenging task for large-scale quantum communication and computational networks 1 –…”
    Get full text
    Journal Article
  2. 2

    Broadband bandpass Purcell filter for circuit quantum electrodynamics by Yan, Haoxiong, Wu, Xuntao, Lingenfelter, Andrew, Joshi, Yash J., Andersson, Gustav, Conner, Christopher R., Chou, Ming-Han, Grebel, Joel, Miller, Jacob M., Povey, Rhys G., Qiao, Hong, Clerk, Aashish A., Cleland, Andrew N.

    Published in Applied physics letters (25-09-2023)
    “…In circuit quantum electrodynamics, qubits are typically measured using dispersively coupled readout resonators. Coupling between each readout resonator and…”
    Get full text
    Journal Article
  3. 3

    Modular Quantum Processor with an All-to-All Reconfigurable Router by Wu, Xuntao, Yan, Haoxiong, Andersson, Gustav, Anferov, Alexander, Chou, Ming-Han, Conner, Christopher R., Grebel, Joel, Joshi, Yash J., Li, Shiheng, Miller, Jacob M., Povey, Rhys G., Qiao, Hong, Cleland, Andrew N.

    Published in Physical review. X (04-11-2024)
    “…Superconducting qubits provide a promising approach to large-scale fault-tolerant quantum computing. However, qubit connectivity on a planar surface is…”
    Get full text
    Journal Article
  4. 4

    Bidirectional multi-photon communication between remote superconducting nodes by Grebel, Joel, Yan, Haoxiong, Chou, Ming-Han, Andersson, Gustav, Conner, Christopher R, Joshi, Yash J, Miller, Jacob M, Povey, Rhys G, Qiao, Hong, Wu, Xuntao, Cleland, Andrew N

    Published 29-09-2023
    “…Quantum communication testbeds provide a useful resource for experimentally investigating a variety of communication protocols. Here we demonstrate a…”
    Get full text
    Journal Article
  5. 5

    Two-dimensional optomechanical crystal resonator in gallium arsenide by Povey, Rhys G, Chou, Ming-Han, Andersson, Gustav, Conner, Christopher R, Grebel, Joel, Joshi, Yash J, Miller, Jacob M, Qiao, Hong, Wu, Xuntao, Yan, Haoxiong, Cleland, Andrew N

    Published 26-07-2023
    “…In the field of quantum computation and communication there is a compelling need for quantum-coherent frequency conversion between microwave electronics and…”
    Get full text
    Journal Article
  6. 6

    Broadband Bandpass Purcell Filter for Circuit Quantum Electrodynamics by Yan, Haoxiong, Wu, Xuntao, Lingenfelter, Andrew, Joshi, Yash J, Andersson, Gustav, Conner, Christopher R, Chou, Ming-Han, Grebel, Joel, Miller, Jacob M, Povey, Rhys G, Qiao, Hong, Clerk, Aashish A, Cleland, Andrew N

    Published 18-07-2023
    “…Appl. Phys. Lett. 123, 134001 (2023) In circuit quantum electrodynamics (QED), qubits are typically measured using dispersively-coupled readout resonators…”
    Get full text
    Journal Article
  7. 7

    Distributed quantum error correction for chip-level catastrophic errors by Xu, Qian, Seif, Alireza, Yan, Haoxiong, Mannucci, Nam, Sane, Bernard Ousmane, Van Meter, Rodney, Cleland, Andrew N, Jiang, Liang

    Published 30-03-2022
    “…Quantum error correction holds the key to scaling up quantum computers. Cosmic ray events severely impact the operation of a quantum computer by causing…”
    Get full text
    Journal Article
  8. 8

    Quantum Networking With Superconducting Qubits by Yan, Haoxiong

    Published 01-01-2024
    “…Superconducting qubits, created using Josephson-based superconducting circuits, offer a promising platform for quantum computing. These circuits have been…”
    Get full text
    Dissertation
  9. 9

    Developing a platform for linear mechanical quantum computing by Qiao, Hong, Dumur, Etienne, Andersson, Gustav, Yan, Haoxiong, Chou, Ming-Han, Grebel, Joel, Conner, Christopher R, Joshi, Yash J, Miller, Jacob M, Povey, Rhys G, Wu, Xuntao, Cleland, Andrew N

    Published 15-02-2023
    “…Linear optical quantum computing provides a desirable approach to quantum computing, with a short list of required elements. The similarity between photons and…”
    Get full text
    Journal Article
  10. 10

    Entanglement purification and protection in a superconducting quantum network by Yan, Haoxiong, Zhong, Youpeng, Chang, Hung-Shen, Bienfait, Audrey, Chou, Ming-Han, Conner, Christopher R, Dumur, Étienne, Grebel, Joel, Povey, Rhys G, Cleland, Andrew N

    Published 25-01-2022
    “…Phys. Rev. Lett. 128, 080504 (2022) High-fidelity quantum entanglement is a key resource for quantum communication and distributed quantum computing, enabling…”
    Get full text
    Journal Article
  11. 11

    Comparing many-body localization lengths via non-perturbative construction of local integrals of motion by Peng, Pai, Li, Zeyang, Yan, Haoxiong, Wei, Ken Xuan, Cappellaro, Paola

    Published 31-12-2018
    “…Phys. Rev. B 100, 214203 (2019) Many-body localization (MBL), characterized by the absence of thermalization and the violation of conventional thermodynamics,…”
    Get full text
    Journal Article
  12. 12

    Distributed Quantum Error Correction for Chip-Level Catastrophic Errors by Xu, Qian, Seif, Alireza, Yan, Haoxiong, Mannucci, Nam, Sane, Bernard Ousmane, Van Meter, Rodney, Cleland, Andrew N, Jiang, Liang

    Published in Physical review letters (09-12-2022)
    “…Quantum error correction holds the key to scaling up quantum computers. Cosmic ray events severely impact the operation of a quantum computer by causing…”
    Get full text
    Journal Article
  13. 13

    Deterministic multi-qubit entanglement in a quantum network by Zhong, Youpeng, Chang, Hung-Shen, Bienfait, Audrey, Dumur, Étienne, Chou, Ming-Han, Conner, Christopher R, Grebel, Joel, Povey, Rhys G, Yan, Haoxiong, Schuster, David I, Cleland, Andrew N

    Published 26-11-2020
    “…Quantum entanglement is a key resource for quantum computation and quantum communication \cite{Nielsen2010}. Scaling to large quantum communication or…”
    Get full text
    Journal Article
  14. 14

    Entanglement Purification and Protection in a Superconducting Quantum Network by Yan, Haoxiong, Zhong, Youpeng, Chang, Hung-Shen, Bienfait, Audrey, Chou, Ming-Han, Conner, Christopher R, Dumur, Étienne, Grebel, Joel, Povey, Rhys G, Cleland, Andrew N

    Published in Physical review letters (25-02-2022)
    “…High-fidelity quantum entanglement is a key resource for quantum communication and distributed quantum computing, enabling quantum state teleportation, dense…”
    Get full text
    Journal Article
  15. 15

    Splitting phonons: Building a platform for linear mechanical quantum computing by Qiao, H, Dumur, É, Andersson, G, Yan, H, Chou, M-H, Grebel, J, Conner, C R, Joshi, Y J, Miller, J M, Povey, R G, Wu, X, Cleland, A N

    “…Linear optical quantum computing provides a desirable approach to quantum computing, with only a short list of required computational elements. The similarity…”
    Get full text
    Journal Article
  16. 16

    Bidirectional Multiphoton Communication between Remote Superconducting Nodes by Grebel, Joel, Yan, Haoxiong, Chou, Ming-Han, Andersson, Gustav, Conner, Christopher R, Joshi, Yash J, Miller, Jacob M, Povey, Rhys G, Qiao, Hong, Wu, Xuntao, Cleland, Andrew N

    Published in Physical review letters (26-01-2024)
    “…Quantum communication test beds provide a useful resource for experimentally investigating a variety of communication protocols. Here we demonstrate a…”
    Get full text
    Journal Article
  17. 17

    Modular quantum processor with an all-to-all reconfigurable router by Wu, Xuntao, Yan, Haoxiong, Andersson, Gustav, Anferov, Alexander, Chou, Ming-Han, Conner, Christopher R, Grebel, Joel, Joshi, Yash J, Li, Shiheng, Miller, Jacob M, Povey, Rhys G, Qiao, Hong, Cleland, Andrew N

    Published 29-07-2024
    “…Superconducting qubits provide a promising approach to large-scale fault-tolerant quantum computing. However, qubit connectivity on a planar surface is…”
    Get full text
    Journal Article