Parametric amplification by coupled flux qubits

in: Applied Physics Letters (2014)
Neilinger, Pavol; Grajcar, Miroslav; Oelsner, Gregor; Hübner, Uwe; Ilichev, Evgeni; Meyer, Hans-Georg; Rehák, Matús
We report parametric amplification of a microwave signal in a Kerr medium formed from superconducting qubits. Two mutually coupled flux qubits, embedded in the current antinode of a superconducting coplanar waveguide resonator, are used as a nonlinear element. Shared Josephson junctions provide the qubit-resonator coupling, resulting in a device with a tunable Kerr constant (up to 3 × 10^-3) and a measured gain of about 20 dB. This arrangement represents a unit cell which can be straightforwardly extended to a quasi one-dimensional quantum metamaterial with large tunable Kerr nonlinearity, providing a basis for implementation of wide-band travelling wave parametric amplifiers.

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