Theory of Zulfia Quantum Kernel: Beyond Classical Kernel

For centuries, only the classical kernel CK = {x | f (x) = 0} and its directquantum analogue CKQ = {ψ | Hψ = 0} have been known.Using the Zulfia Deviation Measure, we develop the Zulfia Quantum KernelKQZ .Let H be classical Hamiltonian and HZ = H + DZ be its Zulfia deformation.For any quantum state ψ, ZDMQ(ψ) = Hψ − HZ ψ = −DZ (ψ).We define:KQZ := {ψ ∈ H | HZ (ψ) = 0} = {ψ | Hψ = ZDMQ(ψ), ∥ψ∥ = 1}In this framework, the classical kernel emerges as a limiting case:limDZ →0 KQZ = CKQ → CKproving KQZ is fundamental.The purpose of this paper is to utilize this newly developed Zulfia QuantumKernel to characterize Zulfia-balanced states where quantum evolution is exactlycompensated by its own deviation, opening a new window to study structuredstability, non-trivial zeros, and hidden symmetries beyond classical zero.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-02
DOI
https://doi.org/10.5281/zenodo.23092245
Primary Topic
Quantum Mechanics and Non-Hermitian Physics
Type
article
Field-Weighted Citation Impact
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Theory of Zulfia Quantum Kernel: Beyond Classical Kernel

DR. ZULFIQAR ALI KHAN
Zenodo (CERN European Organization for Nuclear Research)
Quantum Mechanics and Non-Hermitian Physics
article

Theory of Zulfia Quantum Kernel: Beyond Classical Kernel

DR. ZULFIQAR ALI KHAN
article en

Abstract

For centuries, only the classical kernel CK = {x | f (x) = 0} and its directquantum analogue CKQ = {ψ | Hψ = 0} have been known.Using the Zulfia Deviation Measure, we develop the Zulfia Quantum KernelKQZ .Let H be classical Hamiltonian and HZ = H + DZ be its Zulfia deformation.For any quantum state ψ, ZDMQ(ψ) = Hψ − HZ ψ = −DZ (ψ).We define:KQZ := {ψ ∈ H | HZ (ψ) = 0} = {ψ | Hψ = ZDMQ(ψ), ∥ψ∥ = 1}In this framework, the classical kernel emerges as a limiting case:limDZ →0 KQZ = CKQ → CKproving KQZ is fundamental.The purpose of this paper is to utilize this newly developed Zulfia QuantumKernel to characterize Zulfia-balanced states where quantum evolution is exactlycompensated by its own deviation, opening a new window to study structuredstability, non-trivial zeros, and hidden symmetries beyond classical zero.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 14%
Quantum Mechanics and Non-Hermitian Physics
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