Simultaneous deterministic control of distant qubits in two semiconductor quantum dots
Autor: | Angela Gamouras, S. Freisem, Dennis G. Deppe, Kimberley C. Hall, Reuble Mathew |
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Rok vydání: | 2013 |
Předmět: |
Physics
Quantum network Mechanical Engineering Quantum sensor TheoryofComputation_GENERAL Quantum simulator Bioengineering General Chemistry Condensed Matter Physics Quantum technology Open quantum system Quantum error correction ComputerSystemsOrganization_MISCELLANEOUS Quantum mechanics Qubit General Materials Science Quantum information science |
Zdroj: | Nano letters. 13(10) |
ISSN: | 1530-6992 |
Popis: | In optimal quantum control (OQC), a target quantum state of matter is achieved by tailoring the phase and amplitude of the control Hamiltonian through femtosecond pulse-shaping techniques and powerful adaptive feedback algorithms. Motivated by recent applications of OQC in quantum information science as an approach to optimizing quantum gates in atomic and molecular systems, here we report the experimental implementation of OQC in a solid-state system consisting of distinguishable semiconductor quantum dots. We demonstrate simultaneous high-fidelity π and 2π single qubit gates in two different quantum dots using a single engineered infrared femtosecond pulse. These experiments enhance the scalability of semiconductor-based quantum hardware and lay the foundation for applications of pulse shaping to optimize quantum gates in other solid-state systems. |
Databáze: | OpenAIRE |
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