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Quadruply Bonded Mo$_2$ Molecules Acting as an Inborn Emitter-Resonator Quantum System in Free Space

Quantum Physics 2025-04-08 v3 Chemical Physics

Abstract

In recent decades, significant progress has been made in construction and study of individual quantum systems consisting of the basic single matter and energy particles, i.e., atoms and photons, which show great potentials in quantum computation and communication. Here, we demonstrate that the quadruply-bonded Mo2_2 unit of the complex can trap photons of visible light under ambient conditions, producing intense local electromagnetic (EM) field that features squeezed states, photon antibunching, and vacuum Rabi splitting. Our results show that both the electronic and vibrational states of the Mo2_2 molecule are modified by coherent coupling with the scattered photons of the Mo2_2 unit, as evidenced by the Rabi doublet4 and the Mollow triplet in the incoherent resonance fluorescence and the Raman spectra. The Mo2_2 molecule, acting as an independent emitter-resonator integrated quantum system, allows optical experiments to be conducted in free space, enabling fundamental quantum phenomena to be observed through conventional spectroscopic instrumentation. This provides a new platform for study of field effects and quantum electrodynamics (QED) in the optical domain. The insights gained from this study advance our understanding in metal-metal bond chemistry, molecular physics and quantum optics, with applications in quantum information processing, optoelectronic devices and control of chemical reactivity.

Keywords

Cite

@article{arxiv.2412.01453,
  title  = {Quadruply Bonded Mo$_2$ Molecules Acting as an Inborn Emitter-Resonator Quantum System in Free Space},
  author = {Miao Meng and Ying Ning Tan and Zi Cong He and Zi Hao Zhong and Jia Zhou and Yu Li Zhou and Guang Yuan Zhu and Chun Y. Liu},
  journal= {arXiv preprint arXiv:2412.01453},
  year   = {2025}
}