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Showing 1 to 4 of 4 for “"Superconducting QUantum Interference Devices (SQUIDs)"”.

  1. Microwave response of nonlinear oscillations in resistively shunted superconducting nanowires

    Many superconducting technologies such as rapid single flux quantum computing (RSFQ) and superconducting quantum interference devices (SQUIDs) rely on the modulation of nonlinear dynamics in Josephson junctions for functionality. More recently, however, superconducting devices have been developed …

    mit Repository record for Microwave response of nonlinear oscillations in resistively shunted superconducting nanowires (opens in a new tab)

  2. Thermal activation of superconducting Josephson junctions

    Superconducting quantum circuits (SQCs) are being explored as model systems for scalable quantum computing architectures. Josephson junctions are extensively used in superconducting quantum interference devices (SQUIDs) and in persistent-current qubit systems. Noise excitations, however, have a …

    mit Repository record for Thermal activation of superconducting Josephson junctions (opens in a new tab)

  3. Experimental and analytical study of electrical crosstalk in CMB cold readout systems and implications for power spectra

    … The new generation of CMB experiments employ superconducting devices to improve the sensitivity of the observations. The detection chain of both LiteBIRD and SWIPE is based on Transition Edge Sensors (TESs), which exploit the superconductors’ strong variation of resistance with temperature, …

    trento Repository record for Experimental and analytical study of electrical crosstalk in CMB cold readout systems and implications for power spectra (opens in a new tab)

  4. Sources of noise in niobium-based superconducting quantum circuits

    Quantum computation is a fascinating field that combines novel physics with improvements in computation times and has been rapidly growing in the past few years. Using superconductors to form the qubits has the potential for large-scale computing, if the decoherence inherent in these devices can be …

    uiuc Repository record for Sources of noise in niobium-based superconducting quantum circuits (opens in a new tab)