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Showing 1 to 7 of 7 for “"Circuit QED"”.

  1. Nonlinear Optics Quantum Computation and Quantum Simulation with Circuit-QED

    Superconducting quantum circuits are a promising approach for realizations of large scale quantum information processing and quantum simulations. The Josephson junction, which forms the basis of superconducting circuits, is the only known nonlinear non-dissipative circuit element, and its inherent …

    maryland Repository record for Nonlinear Optics Quantum Computation and Quantum Simulation with Circuit-QED (opens in a new tab)

  2. MAJORANA FERMION IN TOPOLOGICAL SUPERCONDUCTOR AND MOTT‐SUPERFLUID TRANSITION IN CIRCUITQED SYSTEM

    The thesis contains two parts. In Part I, we study the Majorana fermion and its transport in the topological superconductors. In Chapter 2, we investigate the edge states and the vortex core states in the spin-singlet superconductor with Rashba and Dresselhaus (110) spin-orbit couplings. In Chapter …

    nus Repository record for MAJORANA FERMION IN TOPOLOGICAL SUPERCONDUCTOR AND MOTT‐SUPERFLUID TRANSITION IN CIRCUIT‐QED SYSTEM (opens in a new tab)

  3. Quantum technologies with superconducting artificial atoms

    … establish quantum stochastic thermodynamics in circuit-QED. In chapter 3, the implementation of a Lambda system in superconducting artificial atoms is discussed. Strategies for optimal design are investigated by means of optimal symmetry breaking and dynamical decoupling. Stimulated Raman …

    catania Repository record for Quantum technologies with superconducting artificial atoms (opens in a new tab)

  4. Quantum State Estimation and Tracking for Superconducting Processors Using Machine Learning

    … been performed with superconducting qubits and circuit QED have allowed us to explore the light-matter interaction at its most fundamental level. The study of coherent dynamics between two-level systems and resonator modes can provide insight into fundamental aspects of quantum physics, such as …

    chapman Repository record for Quantum State Estimation and Tracking for Superconducting Processors Using Machine Learning (opens in a new tab)

  5. QUANTUM SIMULATION OF BOSONIC SYSTEM AND APPLICATION OF MACHINE LEARNING

    … implementations of generalized boson sampling in circuit-QED and ion-trap platforms. In the rest of the thesis, we move on to different topics. Firstly, we incorporate machine learning techniques in quantum information. We use machine learning to classify rational two-dimensional conformal field …

    maryland Repository record for QUANTUM SIMULATION OF BOSONIC SYSTEM AND APPLICATION OF MACHINE LEARNING (opens in a new tab)

  6. Microwave Spectroscopy and Transport Measurements of Andreev Bound States in Superconductor – Semiconductor Josephson Junctions

    … resistance by an impedance transforming tank circuit which can be adapted for different device resistances. The reflectometry measurement corresponds well with DC transport data meaning this technique can measure Josephson junction dynamics at high frequency. Progress is made towards more …

    cambridge Repository record for Microwave Spectroscopy and Transport Measurements of Andreev Bound States in Superconductor – Semiconductor Josephson Junctions (opens in a new tab)

  7. Machine-Aware Enhancing of Quantum Computers

    … reduce the depth and hence the noise of quantum circuits. These protocols replace long gate circuits, which are the result of decomposing a unitary operator into a sequence of elementary transformations, with a single application of a customized gate obtained by appropriately optimizing a …

    trento Repository record for Machine-Aware Enhancing of Quantum Computers (opens in a new tab)