A Simple Framework for Secure Key Leasing
Fuyuki Kitagawa, Tomoyuki Morimae, Takashi Yamakawa
Abstract
Secure key leasing (a.k.a. key-revocable cryptography) enables us to lease a cryptographic key as a quantum state in such a way that the key can be later revoked in a verifiable manner. We propose a simple framework for constructing cryptographic primitives with secure key leasing via the certified deletion property of BB84 states. Based on our framework, we obtain the following schemes.
• A public key encryption scheme with secure key leasing that has classical revocation based on any IND-CPA secure public key encryption scheme. Prior works rely on either quantum revocation or stronger assumptions such as the quantum hardness of the learning with errors (LWE) problem.
• A pseudorandom function with secure key leasing that has classical revocation based on one-way functions.
Prior works rely on stronger assumptions such as the quantum hardness of the LWE problem.
• A digital signature scheme with secure key leasing that has classical revocation based on the quantum hardness of the short integer solution (SIS) problem. Our construction has static signing keys, i.e., the state of a signing key almost does not change before and after signing. Prior constructions either rely on non-static signing keys or indistinguishability obfuscation to achieve a stronger goal of copy-protection.
In addition, all of our schemes remain secure even if a verification key for revocation is leaked after the adversary submits a valid certificate of deletion. To our knowledge, all prior constructions are totally broken in this setting. Moreover, in our view, our security proofs are much simpler than those for existing schemes.
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 00e1df53-b23d-493f-8af2-bf2469fceeeaCited by top-tier papers4
- PKE and ABE with Collusion-Resistant Secure Key LeasingFuyuki Kitagawa, Ryo Nishimaki, Nikhil PappuCRYPTO 2025 · 2 citations
- A Unified Approach to Quantum Key Leasing with a Classical LessorFuyuki Kitagawa, Jiahui Liu, Shota Yamada, Takashi YamakawaCRYPTO 2026
- Collusion-Resistant Quantum Secure Key Leasing Beyond DecryptionFuyuki Kitagawa, Ryo Nishimaki, Nikhil PappuEUROCRYPT 2026
- Constant-Rate Certified DeletionKai-Min Chung, Tzu-Hsiang Huang, Wei-Hsiang Hung, Shota YamadaCRYPTO 2026
Builds on8
- Hidden Cosets and Applications to Unclonable CryptographyAndrea Coladangelo, Jiahui Liu, Qipeng Liu, Mark ZhandryCRYPTO 2021 · 64 citations
- Secure Software LeasingPrabhanjan Ananth, Rolando L. La PlacaEUROCRYPT 2021 · 51 citations
- Cryptography with Certified DeletionJames Bartusek, Dakshita KhuranaCRYPTO 2023 · 25 citations
- Public Key Encryption with Secure Key LeasingShweta Agrawal, Fuyuki Kitagawa, Ryo Nishimaki, Shota Yamada et al.EUROCRYPT 2023 · 22 citations
- Quantum Public-Key Encryption with Tamper-Resilient Public Keys from One-Way FunctionsFuyuki Kitagawa, Tomoyuki Morimae, Ryo Nishimaki, Takashi YamakawaCRYPTO 2024 · 13 citations
Related papers
- Quantum Key Leasing for PKE and FHE with a Classical LessorOrestis Chardouvelis, Vipul Goyal, Aayush Jain, Jiahui LiuEUROCRYPT 2025 · 3 citations
- Software with Certified DeletionJames Bartusek, Vipul Goyal, Dakshita Khurana, Giulio Malavolta et al.EUROCRYPT 2024 · 13 citations
- Secret Sharing with Publicly Verifiable DeletionJonathan Katz, Benjamin SelaEUROCRYPT 2025 · 3 citations
- Publicly-Verifiable Deletion via Target-Collapsing FunctionsJames Bartusek, Dakshita Khurana, Alexander PorembaCRYPTO 2023 · 14 citations
- Cloning Games: A General Framework for Unclonable PrimitivesPrabhanjan Ananth, Fatih Kaleoglu, Qipeng LiuCRYPTO 2023 · 17 citations
