Zhang He, Zhang Yong, Gao Ge, Zhao Xiangjie, Wang Yi, Huang Qingzhong, Yu Jinzhong, Xia Jinsong
Opt Express. 2015 Sep 7;23(18):23167-76. doi: 10.1364/OE.23.023167.
We present the design of a double-slot photonic crystal cavity as an optomechanical device which contains a nanomechanical resonator with an effective mass as small as 6.91 fg. The optical Q-factor is optimized to 2 × 10(5). Using phononic crystals, the mechanical vibration is confined in a small volume to form a mechanical mode of 4 GHz with a high mechanical Q-factor and a femtogram effective mass. The localized mechanical mode overlaps with the optical field and strengthens the optomechanical coupling with a vacuum optomechanical coupling rate g0/2π exceeding 600 kHz. Considering fabrication imperfections, structures with deviation from ideal design are studied. The symmetry breakage of the structures and the displacement fields makes the mechanical effective masses reduced and close to 4 fg. The devices can be used in ultrasensitive sensing of mass, force and displacement.
我们展示了一种双槽光子晶体腔的设计,它作为一种光机械装置,包含一个有效质量低至6.91飞克的纳米机械谐振器。光学品质因数优化至2×10⁵。利用声子晶体,机械振动被限制在小体积内,形成具有高机械品质因数和飞克级有效质量的4吉赫兹机械模式。局域化机械模式与光场重叠,并以超过600千赫兹的真空光机械耦合率g₀/2π增强光机械耦合。考虑到制造缺陷,研究了与理想设计有偏差的结构。结构的对称性破缺和位移场使机械有效质量降低并接近4飞克。这些装置可用于质量、力和位移的超灵敏传感。