Coherent errors, which arise from collective couplings, are a dominant form of noise in many realistic quantum systems, and are more damaging than oft considered stochastic errors. Here, we propose integrating stabilizer codes with constant-excitation codes by code concatenation. Namely, by concatenating an $[[n,k,d]]$ stabilizer outer code with dual-rail inner codes, we obtain a $[[2n,k,d]]$ constant-excitation code immune from coherent phase errors and also equivalent to a Pauli-rotated stabilizer code. When the stabilizer outer code is fault-tolerant, the constant-excitation code has a positive fault-tolerant threshold against stochastic errors. Setting the outer code as a four-qubit amplitude damping code yields an eight-qubit constant-excitation code that corrects a single amplitude damping error, and we analyze this code's potential as a quantum memory.
翻译:由集体组合产生的共振误差在许多现实的量子系统中是一种主要的噪音形式,并且比人们认为的随机误差更具破坏性。在这里,我们提议通过代码共解将稳定器编码与常振代码结合。也就是说,通过将 $[n,k,d]]$[n,k,d]]]]]]]$稳定器外码与双轨内码混合,我们获得了 $[[2n,k,d,]]]]$(常振代号,不受连贯的相位误差影响,也等同于保利旋转稳定器编码。当稳定器外码耐错时,常振代码对随机误差有一个积极的防错限值。将外部代码设为四公尺安振代码,产生一种八公分常振常振代码,可以纠正单振动震动误差,我们分析该代码作为量量内存的潜力。