Fully tolerant product state testing and closest product state learning
Zongbo Bao, Jonas Helsen, Tuyen Nguyen
Abstract
We address the problem of testing whether an unknown n-qudit state ρ is a-close to a product state or b-far away from any product state, as measured in terms of state overlap. We provide a time-efficient algorithm to solve this problem that requires an n-independent number of copies of the unknown state. Our random coloring argument shows that for any unknown state there always exists a partition of [n] into q parts such that the square of the overlap with the closest product state with respect to this partition is only an additive factor O(1/q) larger. This reduces the problem to tolerant testing of q parties, with potentially growing local dimensions. Combining this insight with blockwise spectral projection arguments we can show that the natural k-copy generalization of Harrow & Montanaro's product state test provides an efficient tolerant tester. We use the same random coloring and blockwise spectral projection techniques to obtain a substantially improved algorithm for closest product state learning. In particular we give an algorithm that takes in O((nd)2)\, 2O(1/8) copies of the unknown state and produces an -approximately optimal product state. The key technical components of this learner are a qudit variant of the Bakshi et al. high-fidelity product state learning algorithm and a sampling technique based on Werner's optimal cloning channel.
Create a lesson
Related papers
Single-Particle Spectral Estimation
Adrian Chapman, Charles Derby, Steven T. Flammia et al.
Learning SYK Hamiltonians
Anurag Anshu, Srinivasan Arunachalam, Sitan Chen et al.
From Permutation Symmetry to Communication Bounds and Additivity
Zahra Baghali Khanian, Debbie Leung, Graeme Smith
Robust exponential lower bounds for fermionic and bosonic Gaussian ranks
Fuchuan Wei, Kong-Wing Wu, Zhengwei Liu et al.
Polynomial-time classical and quantum simulation of quantum impurity models
Jiaqing Jiang, Nathan Ju, Ojas Parekh et al.
Beyond Light Cones: State Preparation Complexity in Quantum Spin Glasses
Omar Al-Ghattas, David Gamarnik, Bobak T Kiani