Collective neutrino oscillations on a quantum computer with hybrid quantum-classical algorithm

We simulate the time evolution of collective neutrino oscillations in two-flavor settings on a quantum computer. We explore the generalization of Trotter-Suzuki approximation to time-dependent Hamiltonian dynamics. The trotterization steps are further optimized using the Cartan decomposition of two-...

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Vydané v:Physical review. D Ročník 108; číslo 8
Hlavní autori: Siwach, Pooja, Harrison, Kaytlin, Balantekin, A. Baha
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: United States American Physical Society (APS) 27.10.2023
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Abstract We simulate the time evolution of collective neutrino oscillations in two-flavor settings on a quantum computer. We explore the generalization of Trotter-Suzuki approximation to time-dependent Hamiltonian dynamics. The trotterization steps are further optimized using the Cartan decomposition of two-qubit unitary gates U ϵ SU(4) in the minimum number of controlled-NOT (CNOT) gates making the algorithm more resilient to the hardware noise. As a result, a more efficient hybrid quantum-classical algorithm is also explored to solve the problem on noisy intermediate-scale quantum devices.
AbstractList We simulate the time evolution of collective neutrino oscillations in two-flavor settings on a quantum computer. We explore the generalization of Trotter-Suzuki approximation to time-dependent Hamiltonian dynamics. The trotterization steps are further optimized using the Cartan decomposition of two-qubit unitary gates U ϵ SU(4) in the minimum number of controlled-NOT (CNOT) gates making the algorithm more resilient to the hardware noise. As a result, a more efficient hybrid quantum-classical algorithm is also explored to solve the problem on noisy intermediate-scale quantum devices.
ArticleNumber 083039
Author Balantekin, A. Baha
Siwach, Pooja
Harrison, Kaytlin
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  surname: Balantekin
  fullname: Balantekin, A. Baha
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Snippet We simulate the time evolution of collective neutrino oscillations in two-flavor settings on a quantum computer. We explore the generalization of...
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SubjectTerms ASTRONOMY AND ASTROPHYSICS
astrophysical & cosmological simulations
neutrino oscillations
neutrinos
novae & supernovae
NUCLEAR PHYSICS AND RADIATION PHYSICS
quantum algorithms & computation
quantum computation
quantum simulation
Title Collective neutrino oscillations on a quantum computer with hybrid quantum-classical algorithm
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