Publication | Open Access
Black-Box Superconducting Circuit Quantization
318
Citations
24
References
2012
Year
Quantum ScienceJosephson JunctionsMajorana FermionEngineeringQuantum ComputingPhysicsSemiclassical MethodMesoscopic Josephson JunctionsMany-body Quantum PhysicQuantum DeviceSuperconductivityCondensed Matter PhysicsComputer EngineeringApplied PhysicsSuperconducting DevicesQuantization (Signal Processing)Transmon SystemSuperconducting Material
We present a semiclassical method for determining the effective low-energy quantum Hamiltonian of weakly anharmonic superconducting circuits containing mesoscopic Josephson junctions coupled to electromagnetic environments made of an arbitrary combination of distributed and lumped elements. A convenient basis, capturing the multimode physics, is given by the quantized eigenmodes of the linearized circuit and is fully determined by a classical linear response function. The method is used to calculate numerically the low-energy spectrum of a 3D transmon system, and quantitative agreement with measurements is found.
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