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Quantum Computing Error Mitigation Advance in Real-Time Quantum Computer with Novel Quantum Using Superposition and Entanglement of Qubits

  • V. Karthick,
  • A. Gayathri

摘要

In contemporary scenarios, numerous intricate challenges persist, evading resolution even by the formidable capabilities of state-of-the-art supercomputers. Quantum computers emerge as a revolutionary force poised to redefine the landscape of computation manifold. This research endeavors to address the persistent obstacle of Noise Mitigation in real-time Quantum Computers, presenting an innovative and efficient method as a potential solution. By exploring novel avenues, this paper aims to contribute to the ongoing quest for enhancing the robustness and reliability of quantum computing systems in the face of inherent noise challenges. The mitigation will be more difficult for data from real devices or qubits, as well as for more complicated noise models. All the Quantum Circuits used in Qiskit's! (IBMQx2, IBMQ-London, and IBMQ-Rome) of IBM, as well as in different simulators (Pennylane, Qiskit-Aer, and Cirq) and processed using Quantum computer properties such as Quantum Superposition and Entanglement. Proposed method has given 78.41% which is 10% more accurate results than the existing method using 3 Qubits as well in IBM real-time Quantum Computer.