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Simulating spectroscopy experiments with a superconducting quantum computer
DOI:10.1103/PhysRevResearch.4.043106.png)
Abstract
En 中文
We present a method for solving eigenvalue problems on a quantum computer based on spectroscopy. The method works by coupling a probe qubit to a set of system simulation qubits and then time evolving both the probe and the system under Hamiltonian dynamics. In this way, we simulate spectroscopy on a quantum computer. We test our method on the IBM quantum hardware for a simple single-spin model and an interacting Kitaev chain model. For the Kitaev chain, we trace out the pseudotopological phase boundary for a two-site model.
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