Centre for Quantum Dynamics, Griffith University, Nathan, Queensland 4111, Australia.
Opt Lett. 2011 Apr 15;36(8):1371-3. doi: 10.1364/OL.36.001371.
A microfabricated phase Fresnel lens was used to image ytterbium ions trapped in a radio frequency Paul trap. The ions were laser cooled close to the Doppler limit on the 369.5 nm transition, reducing the ion motion so that each ion formed a near point source. By detecting the ion fluorescence on the same transition, near-diffraction-limited imaging with spot sizes of below 440 nm (FWHM) was achieved. To our knowledge, this is the first demonstration of wavelength-scale imaging of trapped ions and the highest imaging resolution ever achieved with atoms in free space.
使用微制造的相位菲涅尔透镜对囚禁在射频 Paul 阱中的镱离子进行成像。离子通过激光冷却接近 369.5nm 跃迁的多普勒极限,从而减小离子运动,使每个离子形成近点源。通过检测同一跃迁上的离子荧光,实现了接近衍射极限的成像,光斑尺寸小于 440nm(半高全宽)。据我们所知,这是首次在囚禁离子中实现波长量级的成像,也是在自由空间中用原子实现的最高成像分辨率。