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On the tensorization of the variational distance

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arxiv 2409.10368 v2 pith:FEBVSWPH submitted 2024-09-16 math.PR

classification math.PR
keywords otimesdeltalowerboundsestimateupperdistancesqrt
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abstract

If one seeks to estimate the total variation between two product measures $||P^\otimes_{1:n}-Q^\otimes_{1:n}||$ in terms of their marginal TV sequence $\delta=(||P_1-Q_1||,||P_2-Q_2||,\ldots,||P_n-Q_n||)$, then trivial upper and lower bounds are provided by$ ||\delta||_\infty \le ||P^\otimes_{1:n}-Q^\otimes_{1:n}||\le||\delta||_1$. We improve the lower bound to $||\delta||_2\lesssim||P^\otimes_{1:n}-Q^\otimes_{1:n}||$, thereby reducing the gap between the upper and lower bounds from $\sim n$ to $\sim\sqrt $. Furthermore, we show that {\em any} estimate on $||P^\otimes_{1:n}-Q^\otimes_{1:n}||$ expressed in terms of $\delta$ must necessarily exhibit a gap of $\sim\sqrt n$ between the upper and lower bounds in the worst case, establishing a sense in which our estimate is optimal. Finally, we identify a natural class of distributions for which $||\delta||_2$ approximates the TV distance up to absolute multiplicative constants.

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    Approximating total variation distance between two Gibbs distributions of hardcore or Ising models reduces to sampling and approximate counting, while the same problem for single-vertex marginals is #P-hard even in tr...

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