Quantum Coin Flipping, Qubit Measurement, and Generalized Fibonacci Numbers

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Date

2021

Authors

Pashaev, Oktay

Journal Title

Journal ISSN

Volume Title

Publisher

Pleiades Publishing

Open Access Color

BRONZE

Green Open Access

Yes

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Publicly Funded

No
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Top 10%
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Top 10%
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Top 10%

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Abstract

The problem of Hadamard quantum coin measurement in n trials, with an arbitrary number of repeated consecutive last states, is formulated in terms of Fibonacci sequences for duplicated states, Tribonacci numbers for triplicated states, and N-Bonacci numbers for arbitrary N-plicated states. The probability formulas for arbitrary positions of repeated states are derived in terms of the Lucas and Fibonacci numbers. For a generic qubit coin, the formulas are expressed by the Fibonacci and more general, N-Bonacci polynomials in qubit probabilities. The generating function for probabilities, the Golden Ratio limit of these probabilities, and the Shannon entropy for corresponding states are determined. Using a generalized Born rule and the universality of the n-qubit measurement gate, we formulate the problem in terms of generic n- qubit states and construct projection operators in a Hilbert space, constrained on the Fibonacci tree of the states. The results are generalized to qutrit and qudit coins described by generalized FibonacciN-Bonacci sequences.

Description

Keywords

Fibonacci numbers, Quantum measurement, Tribonacci numbers, N-Bonacci numbers, Quantum Physics, Mathematics - Quantum Algebra, FOS: Mathematics, Quantum Algebra (math.QA), FOS: Physical sciences, Mathematical Physics (math-ph), Quantum Physics (quant-ph), Mathematical Physics

Fields of Science

0103 physical sciences, 01 natural sciences

Citation

WoS Q

Q3

Scopus Q

Q4
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OpenCitations Citation Count
3

Source

Theoretical and Mathematical Physics

Volume

208

Issue

2

Start Page

1075

End Page

1092
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Scopus : 4

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Mendeley Readers : 3

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4

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Web of Science™ Citations

3

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Page Views

11569

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Downloads

405

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