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Predicting fermionic densities using a Projected Quantum Kernel method

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arxiv 2504.14002 v2 pith:BBWPLYUU submitted 2025-04-18 quant-ph cond-mat.str-elcs.LG

Predicting fermionic densities using a Projected Quantum Kernel method

classification quant-ph cond-mat.str-elcs.LG
keywords methodquantumkernelfermionicdensityfunctionmeasurementprojected
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We use a support vector regressor based on a projected quantum kernel method to predict the density structure of 1D fermionic systems of interest in quantum chemistry and quantum matter. The kernel is built on with the observables of a quantum reservoir implementable with interacting Rydberg atoms. Training and test data of the fermionic system are generated using a Density Functional Theory approach. We test the performance of the method for several Hamiltonian parameters, finding a general common behavior of the error as a function of measurement time. At sufficiently large measurement times, we find that the method outperforms the classical linear kernel method and can be competitive with the radial basis function method.

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