Mechanical modes are a potentially useful resource for quantum information applications, such as quantum-level wavelength transducers, due to their ability to interact with electromagnetic radiation across the spectrum. A significant challenge for wavelength transducers is thermomechanical noise in the mechanical mode, which pollutes the transduced signal with thermal states. In this paper, we eliminate thermomechanical noise in the GHz-frequency mechanical breathing mode of a piezoelectric optomechanical crystal using cryogenic cooling in a dilution refrigerator. We optically measure an average thermal occupancy of the mechanical mode of only 0.7±0.4phonons, providing a path towards low-noise microwave-to-optical conversion in the quantum regime.
@article{arxiv.1812.09417,
title = {Elimination of Thermomechanical Noise in Piezoelectric Optomechanical Crystals},
author = {H. Ramp and B. D. Hauer and K. C. Balram and T. J. Clark and K. Srinivasan and J. P. Davis},
journal= {arXiv preprint arXiv:1812.09417},
year = {2019}
}
Comments
six pages, first submitted 12/21/2018. v2: essential revision