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March 1, 2026Modern Physics Letters A0 citations

Quantum hash function using discrete-time quantum walk on Hanoi network

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PGPulak Ranjan Giri

Key Points

  • To develop a quantum hash function using discrete-time quantum walk on a Hanoi network that ensures robust collision resistance.
  • Proposed a hash function based on discrete-time quantum walk on a Hanoi network.
  • Utilized message bits to control probability amplitude flow through long-range edges.
  • Implemented conditional shift operators to enhance robustness.”],
  • results
  • Achieved high collision resistance compared to classical hash functions.
  • Functionality validated for short messages, unlike classical quantum walk-based hash functions that require longer bits.

Abstract

Quantum walk based hash functions have attracted a lot of attention in recent years because of its faster execution time and robust resistance against attacks compared to classical hash functions. It has been observed that the underlying graph and the way message controls the quantum walk iteration steps play a crucial role for the robustness of the hash function. We propose a quantum hash function based on the discrete-time quantum walk on a Hanoi network-a one dimensional periodic lattice with extra long-range edges of a specific form-which is highly collision resistant. The message bits of our scheme control the flow of probability amplitude through the extra long-range edges and the conditional shift operators. Our method even works for messages with small bit-lengths, contrary to most of the quantum walk based hash functions defined on a cycle, which usually work for messages with bit-lengths more than the length of the cycle.

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Cite This Study

Pulak Ranjan Giri (2026) studied this question.

synapsesocial.com/papers/69a3d811ec16d51705d2e92ahttps://doi.org/10.1142/s0217732326500860
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