Student-Teacher Constructive Separations and (Un)Provability in Bounded Arithmetic: Witnessing the Gap
Stefan Grosser, Marco Carmosino
Abstract
Let C be a complexity class and A be a language. The statement "A / ∈ C" is a separation of A from C. A separation is constructive if there is an efficient algorithm called a refuter that prints counterexamples to the statement "M decides A" for every C-algorithm M . Concretely, refuters witness errors of M on A by printing, on input 1 n , an n-bit string x such that M (x) ̸ = A(x). Many recent breakthroughs in lower bounds and derandomization, like the algorithmic method [12], rely on constructive separations as a core component. Chen, Jin, Santhanam, and Williams [14] studied the consequences of constructivizing classical non-constructive lower bounds in complexity theory. They showed that (1) constructivizing many known separations would imply breakthrough lower bounds, and (2) some separations are impossible to constructivize.
We study a more general notion of "efficient refutation" in terms of C-Student-Teacher Games, where the C-refuter (Student) is allowed to adaptively propose candidate counterexamples xi to an omniscient Teacher. If xi fails to witness an error, Teacher reveals a counterexample yi to the statement "xi is a counterexample to the statement 'M decides A' " -the nature of yi depending on how the separated language A and complexity class C are defined. We show:
• If there is a P-Student-Teacher constructive separation of Palindromes from one-tape nondeterministic O(n 1+ε ) time [39], then NP ̸ ⊂ SIZE[n k ] for every k.
• If there is a uniform AC 0 [qpoly]-Student-Teacher protocol generating truth tables of super fixed polynomial circuit complexity, then P ̸ = NP.
• There is no P-Student-Teacher protocol which for infinitely many c > 0, generates high-K n c strings.
Our results imply a conditional separation of Jeřábek's theory VAPC from V 1 , a theory equivalent to Buss's theory S 1 2 . This improves and significantly simplifies the work of Ilango, Li, and Williams [25], who separate VAPC from the weaker theory VPV under the existence of indistinguishability obfuscation. We do not use cryptographic assumptions in our separation. Instead we introduce a natural and plausible conjecture on the uniformity of proofs in bounded arithmetic, inspired by Kreisel's Conjecture in logic. We believe this conjecture to be of independent interest.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 4dfee98d-3f57-4619-b2b2-01eb627e4e72Cited by top-tier papers2
- A Theory for Probabilistic Polynomial-Time ReasoningLijie Chen, Jiatu Li, Igor C. Oliveira, Ryan WilliamsSTOC 2026 · 1 citation
- Cell-Probe Lower Bounds via Semi-Random CSP Refutation: Simplified and the Odd-Locality CaseVenkatesan Guruswami, Xin Lyu, Weiqiang YuanSODA 2026
Builds on13
- On One-way Functions and Kolmogorov ComplexityYanyi Liu, Rafael PassFOCS 2020 · 39 citations
- Almost-Everywhere Circuit Lower Bounds from Non-Trivial DerandomizationLijie Chen, Xin Lyu, R. Ryan WilliamsFOCS 2020 · 29 citations
- On the Range Avoidance Problem for CircuitsHanlin Ren, Rahul Santhanam, Zhikun WangFOCS 2022 · 19 citations
- The Hardest Explicit ConstructionOliver KortenFOCS 2021 · 18 citations
- Indistinguishability Obfuscation, Range Avoidance, and Bounded ArithmeticRahul Ilango, Jiatu Li, R. Ryan WilliamsSTOC 2023 · 17 citations
Related papers
- Constructive Separations and Their ConsequencesLijie Chen, Ce Jin, Rahul Santhanam, R. Ryan WilliamsFOCS 2021 · 4 citations
- Unprovability of Strong Complexity Lower Bounds in Bounded ArithmeticJiatu Li, Igor C. OliveiraSTOC 2023 · 2 citations
- LEARN-Uniform Circuit Lower Bounds and Provability in Bounded ArithmeticMarco Carmosino, Valentine Kabanets, Antonina Kolokolova, Igor C. OliveiraFOCS 2021 · 6 citations
- The Proof Analysis ProblemNoel Arteche, Albert Atserias, Susanna F. de Rezende, Erfan KhanikiFOCS 2025 · 4 citations
- Finding Bugs in Short Proofs: The Metamathematics of Resolution Lower BoundsJiawei Li, Yuhao Li, Hanlin RenSTOC 2026 · 3 citations
