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Bibliographic Details
Main Author: LEE, SI WOO
Format: Recurso digital
Language:English
Published: Zenodo 2025
Subjects:
Online Access:https://doi.org/10.5281/zenodo.15388807
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Table of Contents:
  • <p dir="ltr">This paper is a follow-up to A Quantum-Resistant Conditional Decryption Framework Based on Keyless and Contextual Access Control (Lee, 2025), aiming to quantitatively and logically evaluate how powerful the proposed structure is in terms of security and conditional execution control.</p> <p dir="ltr">It introduces a novel "Conditional Execution Privilege System (S-Lock/S-Fin)" that enables execution only when predefined conditions are met, going beyond conventional cryptographic security systems. This system temporarily generates an execution privilege key by combining static and dynamic conditions. The key is not stored in memory and is immediately destroyed according to TTL (Time-To-Live) behavior, making it fundamentally unhackable and irreproducible. It utilizes a condition space that is practically beyond the reach of quantum computers and implements a defensive structure in which even the attack target does not exist prior to condition fulfillment. This paper outlines the system’s design principles, mathematical complexity, quantum nullification capability, and potential applications.</p> <p> </p>