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QUANTUM DOT DEVICES COMPRISING VAN DER WAALS HETEROSTRUCTURES SUPPORTING NON-ABELIAN ANYONS

机译:包含支持非阿贝尔任意子的范德华异质结构的量子点器件

摘要

Apparatus, methods, and systems are disclosed for robust scalable topological quantum computing. Quantum dots are formed using quantum dot gates (714, 716, 718) on van der Waals heterostructures (702, 704, 706, 708, 710, 712), supporting localized topological phases and non-Abelian anyons (quasiparticles). Large bandgaps provide noise immunity. Three-dot structures include an intermediate quantum dot (736) between two computational quantum dots (734, 738). With the intermediate quantum dot in an OFF state, quasiparticles at the computational quantum dots can be isolated, with long lifetimes. Alternatively, the intermediate quantum dot can be controlled to decrease the quasiparticle tunneling barrier, enabling fast computing operations. A computationally universal suite of operations includes quasiparticle initialization, braiding, fusion, and readout of fused quasiparticle states, with, optionally, transport or tunable interactions - all topologically protected. Robust qubits can be operated without error correction. Quasilinear arrays of quantum dots or qubits can be scaled arbitrarily, up to resource limits, and large- scale topological quantum computers can be realized. Extensive two- dimensional arrays can also be used.
机译:公开了用于鲁棒可伸缩拓扑量子计算的装置、方法和系统。量子点是在范德华异质结构(702、704、706、708、710、712)上使用量子点门(714、716、718)形成的,支持局域拓扑相位和非阿贝尔任意子(准粒子)。大的带隙提供抗噪性。三点结构包括两个计算量子点(734738)之间的中间量子点(736)。当中间量子点处于关闭状态时,计算量子点上的准粒子可以被隔离,具有较长的寿命。或者,可以控制中间量子点以减少准粒子隧穿势垒,从而实现快速计算操作。一套计算通用的操作包括准粒子初始化、编织、融合和融合准粒子状态的读出,以及可选的传输或可调相互作用——所有这些都受拓扑保护。稳健的量子位可以在无需纠错的情况下运行。量子点或量子比特的准线性阵列可以任意缩放,达到资源限制,并且可以实现大规模拓扑量子计算机。也可以使用广泛的二维阵列。

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