Fransson J, Bird J P
Department of Physics and Astronomy, Uppsala University, Box 516, 75120, Uppsala, Sweden.
Department of Electrical Engineering, University at Buffalo, The State University of New York, Buffalo, NY, 14260, USA.
Sci Rep. 2025 Apr 19;15(1):13616. doi: 10.1038/s41598-025-96345-4.
One of the key requirements for quantum phononics, especially for scenarios involving quantum communication and quantum-state transduction, is the implementation of a controlled phonon source, ultimately with the capacity to source single phonons at some desired generation rate. In this article, we describe a scheme for the controlled sourcing of phonons that exploits an electron-spin resonance between the Zeeman-split levels of a gated quantum dot. This on-chip scheme allows for broad tunability of the energy of the generated phonons, with convenient electrical control. By providing a compact and coherent source, this scheme is also well suited to the construction of more-extended phononic circuits, involving the sourcing, transmission and detection of phononic signals.
量子声子学的关键要求之一,特别是对于涉及量子通信和量子态转导的场景,是实现一个可控的声子源,最终能够以某种期望的产生速率产生单声子。在本文中,我们描述了一种利用门控量子点的塞曼分裂能级之间的电子自旋共振来可控地产生声子的方案。这种片上方案允许对所产生声子的能量进行广泛的调谐,并具有方便的电控制。通过提供一个紧凑且相干的源,该方案也非常适合构建更复杂的声子电路,包括声子信号的产生、传输和检测。