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March 29, 2026Quantum0 citationsOpen Access

Quantum Signal Processing and Quantum Singular Value Transformation on U ( N )

XLXi LuYLY. M. LIU.HLHongwei Lin

Key Points

  • This framework aims to extend quantum signal processing and singular value transformations for more complex polynomial operations.
  • Developed a framework for quantum signal processing and singular value transformation on U(N).
  • Characterized achievable polynomial matrices for simultaneous polynomial realizations.
  • Constructed quantum circuits through recursive algorithms for desired transformations.
  • Achieved O(d) query complexity for N-interval decision problems.
  • Improved query efficiency over existing iterative U(2)-QSP methods by a log2(N) factor.
  • Demonstrated a quantum amplitude estimation algorithm reaching the Heisenberg limit without needing adaptive measurements.

Abstract

Quantum signal processing and quantum singular value transformation are powerful tools to implement polynomial transformations of block-encoded matrices on quantum computers, and has achieved asymptotically optimal complexity in many prominent quantum algorithms. We propose a framework of quantum signal processing and quantum singular value transformation on U ( N ) , which realizes multiple polynomials simultaneously from a block-encoded input, as a generalization of those on U ( 2 ) in the original frameworks. We provide a comprehensive characterization of achievable polynomial matrices and give recursive algorithms to construct the quantum circuits that realize desired polynomial transformations. As three example applications, we propose a framework to realize bi-variate polynomial functions, demonstrate N -interval decision achieving O ( d ) query complexity with a log 2 N improvement over iterative U ( 2 ) -QSP requiring O ( d log 2 N ) queries, and present a quantum amplitude estimation algorithm achieving the Heisenberg limit without adaptive measurements.

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Cite This Study

Lu et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2fcde0f0f753b39d765https://doi.org/10.22331/q-2026-03-27-2048
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