Institut für Theoretische Festkörperphysik, Karlsruhe Institute of Technology, 76128 Karlsruhe, Germany.
Phys Rev Lett. 2012 May 11;108(19):190506. doi: 10.1103/PhysRevLett.108.190506.
We propose a mechanism for coupling spin qubits formed in double quantum dots to a superconducting transmission line resonator. Coupling the resonator to the gate controlling the interdot tunneling creates a spin qubit-resonator interaction with a strength of tens of MHz. This mechanism allows operating the system at a symmetry point where decoherence due to charge noise is minimized. The transmission line can serve as the shuttle, allowing for fast two-qubit operations including the generation of qubit-qubit entanglement and the implementation of a controlled-phase gate.
我们提出了一种将双量子点中的自旋量子比特与超导传输线谐振器耦合的机制。通过将谐振器与控制量子点间隧穿的栅极耦合,可产生具有数十 MHz 强度的自旋量子比特-谐振器相互作用。该机制允许在对称性点操作该系统,在该点处由于电荷噪声引起的退相干最小化。传输线可用作穿梭器,允许进行快速的双量子比特操作,包括生成量子比特纠缠和实现受控相位门。