论文标题
Majorana零模式Qubit的模拟量子传送
Emulating quantum teleportation of a Majorana zero mode qubit
论文作者
论文摘要
基于Anyons的拓扑量子计算是实现容忍量子计算的有前途的方法。 Kitaev链中的Majorana零模式是可以使用编织操作来执行量子门的非亚伯式的一个例子。在这里,我们通过传送在Kitaev链的Majorana零模式中编码的量子量进行拓扑量子计算进行量子模拟。量子模拟是通过将Kitaev链映射到等效的自旋版本并在超导量子处理器中实现基态的。传送传递在Majorana零模式的旋转版本中编码的量子状态在两个Kitaev链之间。传送电路仅使用编织操作实现,尽管仅限于Clifford大门,但仍可以实现。 Majorana编码是一个量子错误检测相位翻转错误的代码,用于提高六个不同状态的传送的平均保真度,从$ 70.76 \ pm 0.35 \%$ 0.35 \%$ $ $ $ $ $ 0.11 \%0.11 \%$,在任何一种情况下都超过了经典的限制。
Topological quantum computation based on anyons is a promising approach to achieve fault-tolerant quantum computing. The Majorana zero modes in the Kitaev chain are an example of non-Abelian anyons where braiding operations can be used to perform quantum gates. Here we perform a quantum simulation of topological quantum computing, by teleporting a qubit encoded in the Majorana zero modes of a Kitaev chain. The quantum simulation is performed by mapping the Kitaev chain to its equivalent spin version, and realizing the ground states in a superconducting quantum processor. The teleportation transfers the quantum state encoded in the spin-mapped version of the Majorana zero mode states between two Kitaev chains. The teleportation circuit is realized using only braiding operations, and can be achieved despite being restricted to Clifford gates for the Ising anyons. The Majorana encoding is a quantum error detecting code for phase flip errors, which is used to improve the average fidelity of the teleportation for six distinct states from $70.76 \pm 0.35 \% $ to $84.60 \pm 0.11 \%$, well beyond the classical bound in either case.