How (not) to Build Quantum PKE in Minicrypt
Longcheng Li, Qian Li, Xingjian Li, Qipeng Liu

TL;DR
This paper proves the impossibility of constructing certain types of quantum public key encryption from one-way functions in the quantum random oracle model, highlighting fundamental limitations and conditions for such cryptographic schemes.
Contribution
It establishes new impossibility results for quantum PKE with classical and quantum public keys in the QROM, advancing the understanding of quantum cryptographic limitations.
Findings
Classical public key quantum PKE does not exist in QROM with classical key generation queries.
Quantum public key PKE with classical secret keys and ciphertext does not exist in QROM under certain conditions.
The work introduces novel quantum information techniques for cryptographic impossibility proofs.
Abstract
The seminal work by Impagliazzo and Rudich (STOC'89) demonstrated the impossibility of constructing classical public key encryption (PKE) from one-way functions (OWF) in a black-box manner. However, the question remains: can quantum PKE (QPKE) be constructed from quantumly secure OWF? A recent line of work has shown that it is indeed possible to build QPKE from OWF, but with one caveat -- they rely on quantum public keys, which cannot be authenticated and reused. In this work, we re-examine the possibility of perfect complete QPKE in the quantum random oracle model (QROM), where OWF exists. Our first main result: QPKE with classical public keys, secret keys and ciphertext, does not exist in the QROM, if the key generation only makes classical queries. Therefore, a necessary condition for constructing such QPKE from OWF is to have the key generation classically ``un-simulatable''.…
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Taxonomy
TopicsQuantum Computing Algorithms and Architecture · Cryptography and Data Security · Cryptographic Implementations and Security
