论文标题
紧密结合模型中半导体静电量子置量置量与约瑟夫森连接之间的界面的描述
Description of interface between semiconductor electrostatic qubit and Josephson junction in tight binding model
论文作者
论文摘要
描述了在耦合半导体Q点实现的超导体约瑟夫森连接与基于半导体位置的量子之间的界面,因此它可以成为超导和半导体量子计算机之间静电界面的基础。通过极简主义的紧密结合模型,发现了通过半导体量子量子与超导量Qubit的近端和静电相互作用在Josephson交界处修改Andreev结合状态。获得的分析结果允许在半导体量子计算机和超导量子计算机之间创建接口。他们打开了Qiskit之类的构建类似软件的构造的观点,该软件将描述两种类型的量子计算机及其接口。 关键词:静电纠缠,半导体和超导量子计算机之间的接口,紧密结合的BDGE方程,分析解决方案,物质拓扑状态,混合量子计算机
The interface between superconducting Josephson junction and semiconductor position-based qubit implemented in coupled semiconductor q-dots is described such that it can be the base for electrostatic interface between superconducting and semiconductor quantum computer. Modification of Andreev Bound State in Josephson junction by the presence of semiconductor qubit in its proximity and electrostatic interaction with superconducting qubit is spotted by the minimalist tight-binding model. The obtained analytical results allow in creating interface between semiconductor quantum computer and superconducting quantum computer. They open the perspective of construction of QISKIT like software that will describe both types of quantum computers as well as their interface. Key words: electrostatic entanglement, interface between semiconductor and superconducting quantum computer, tight-binding BdGe equations, analytical solutions, topological states of matter, hybrid quantum computer