Strongly refuting all semi-random Boolean CSPs
Jackson Abascal, Venkatesan Guruswami, Pravesh K. Kothari
Abstract
We give an efficient algorithm to strongly refute semi-random instances of all Boolean constraint satisfaction problems. The number of constraints required by our algorithm matches (up to polylogarithmic factors) the best known bounds for efficient refutation of fully random instances. Our main technical contribution is an algorithm to strongly refute semi-random instances of the Boolean k-XOR problem on n variables that have O(n k/2 ) constraints. (In a semi-random k-XOR instance, the equations can be arbitrary and only the right hand sides are random.)
One of our key insights is to identify a simple combinatorial property of random XOR instances that makes spectral refutation work. Our approach involves taking an instance that does not satisfy this property (i.e., is not pseudorandom) and reducing it to a partitioned collection of 2-XOR instances. We analyze these subinstances using a carefully chosen quadratic form as proxy, which in turn is bounded via a combination of spectral methods and semidefinite programming. The analysis of our spectral bounds relies only on an off-the-shelf matrix Bernstein inequality. Even for the purely random case, this leads to a shorter proof compared to the ones in the literature that rely on problem-specific trace-moment computations.
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Install the CLIlune papers fulltext 25060415-5229-45ef-a67f-d2a56a65d0d5Cited by top-tier papers8
- Algorithms and certificates for Boolean CSP refutation: smoothed is no harder than randomVenkatesan Guruswami, Pravesh K. Kothari, Peter ManoharSTOC 2022 · 18 citations
- Efficient Algorithms for Semirandom Planted CSPs at the Refutation ThresholdVenkatesan Guruswami, Jun-Ting Hsieh, Pravesh K. Kothari, Peter ManoharFOCS 2023 · 3 citations
- Algorithmic Thresholds for Refuting Random Polynomial SystemsJun-Ting Hsieh, Pravesh K. KothariSODA 2022 · 2 citations
- Stronger Cell Probe Lower Bounds via Local PRGsOliver Korten, Toniann Pitassi, Russell ImpagliazzoFOCS 2025 · 2 citations
- A kq/q-2 Lower Bound for Odd Query Locally Decodable Codes from Bipartite Kikuchi GraphsOliver Janzer, Peter ManoharFOCS 2025 · 1 citation
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