Michnicki Kamil P
Department of Physics, University of Washington, Seattle, Washington 98198-1560, USA.
Phys Rev Lett. 2014 Sep 26;113(13):130501. doi: 10.1103/PhysRevLett.113.130501. Epub 2014 Sep 24.
We discuss energy barriers and their relationship to self-correcting quantum memories. We introduce the solid code, a 3D version of Kitaev's surface code, and then combine several solid codes using a technique called welding. The resulting code is a [[O(L³),1,O(L(4/3))]] stabilizer code with an energy barrier of O(L(2/3)), which is an exponential improvement over the previous highest energy barrier in 3D. No-go results are avoided by breaking microscopic translation invariance.
我们讨论了能量壁垒及其与自纠错量子存储器的关系。我们引入了固体码,它是基塔耶夫表面码的三维版本,然后使用一种称为焊接的技术将几个固体码组合起来。得到的码是一个[[O(L³),1,O(L(4/3))]]稳定子码,其能量壁垒为O(L(2/3)),相对于三维中之前的最高能量壁垒有指数级的提升。通过打破微观平移不变性避免了不可行结果。