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Cryptology ePrint Archive

Formalizing and Strengthening the Security Proof of NTOR Verifiable Anomaly and Similarity Detection Using Matrix Profile in Private Time-series Adaptor Signature Schemes with Deniable Presignatures Privacy Coins Under Viewing Key Compromise Adaptively-Secure Flexible and Identity-Based Broadcast Encryption from Decomposed LWE MERIDIAN: A Toroid-Inspired Permutation Block Cipher for Constrained Environments PPML Is More Vulnerable to Cryptanalytic Extraction Attacks Toward Practical Fair Data Exchange: Eliminating In-Circuit Public-Key Operations Fault Injection Attacks Against zkSTARKs Scale, Round, Break: Simple Leakage Attacks on Secret Sharing Schemes Private Delegation of (Non-)Membership Proof Updates in Cryptographic Accumulators Beyond Binary: crosscorrelation of Cubic, Quartic and Quintic Character Sequences ZEE200: Zero Knowledge for Everything and Everyone @ 200 KHz A Post-Quantum Accountable Sanitizable Signature Scheme Based on Unbalanced Oil and Vinegar Better Usability: Leakage-Resistant AEADs from Single-length Blockciphers TieredOMap: Skewness-Aware Oblivious Map From Rerandtopia to Interceptopia, the Anamorphic Encryption Saga Rises Non-Adaptive Programmable PRFs and Applications to Stacked Garbling Practical Post-Quantum Secure Publicly Verifiable Secret Sharing and Applications Mosaic: Practical Malicious Security for Garbled Circuits on Bitcoin Efficient Bootstrapping of Matrices in FHE Decomposing Multiplication: A Vertical Packing Approach for Faster TFHE Formal Verification, Integration and Physical Evaluation of Prime-Field Masking on Silicon New Techniques for Communication-Efficient Secure Comparison Protocols Pairing-Based Verifiable Shuffles with Logarithmic-Size Proofs Verifying Provenance of Digital Media: Security Analysis of C2PA and its Implementation EQuADiSE: Efficient Quantum-safe Adaptive Distributed Symmetric-key Encryption Secure and Updatable Single Password Authentication Batch-Puncturing Circuit CP-ABE (and More) from Lattices Panther: Robust Hybrid KEM Combiners via Structural Splicing
SoK: Impermanent Loss, An Unavoidable Fee or a Controlled...
Arad Kotzer, Technion – Israel Institute of Technology · 2026-05-27 · via Cryptology ePrint Archive

Paper 2026/1073

SoK: Impermanent Loss, An Unavoidable Fee or a Controlled Phenomenon?

Ori Rottenstreich, Technion – Israel Institute of Technology

Abstract

Decentralized exchanges built on Automated Market Maker (AMM) protocols have become a cornerstone of Decentralized Finance (DeFi), offering token swaps without conventional order-book matching. However, supplying liquidity to these AMM pools exposes participants to distinctive market risks, most notably impermanent loss (IL) - the potential underperformance of a liquidity-provider portfolio relative to simply holding the underlying tokens. This paper presents a comprehensive overview of IL, unifying its main theoretical models, empirical evidence, and mitigation strategies. Our survey spans constant-function and concentrated liquidity market makers, synthesizes findings from leading DeFi protocols, and reviews mitigation methods that include both protocol-level adaptations and financial-engineering approaches. Across these perspectives, we highlight recurring trade-offs, cost, complexity, and security. Finally, we outline open questions for managing IL's systemic effects, keeping decentralized liquidity provision both profitable for participants and sustainable for the broader ecosystem.

BibTeX

@misc{cryptoeprint:2026/1073,
      author = {Arad Kotzer and Ori Rottenstreich},
      title = {{SoK}: Impermanent Loss, An Unavoidable Fee or a Controlled Phenomenon?},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/1073},
      year = {2026},
      url = {https://eprint.iacr.org/2026/1073}
}