We introduce an algorithm that is able to find the facets of Coulomb diamonds in quantum dot arrays. We simulate these arrays using the constant-interaction model, and rely only on one-dimensional raster scans (rays) to learn a model of the device using regularized maximum likelihood estimation. This allows us to determine, for a given charge state of the device, which transitions exist and what the compensated gate voltages for these are. For smaller devices the simulator can also be used to compute the exact boundaries of the Coulomb diamonds, which we use to assess that our algorithm correctly finds the vast majority of transitions with high precision.
翻译:我们引入了一种算法, 能够在量子点阵列中找到库伦钻石的方方面面。 我们用恒定交互模型模拟这些阵列, 并且只依靠单维光学扫描( rays) 来学习一个使用常规最大概率估计的装置模型。 这使我们能够根据设备的特定充电状态, 确定存在哪些转换, 以及这些转换的补偿性门电压。 对于较小的装置, 模拟器也可以用来计算库伦钻石的准确边界, 我们用它来评估我们的算法正确地发现绝大多数的转换是高度精确的。