Astigmatism-based active focus stabilisation with universal objective lens compatibility, extended operating range and nanometer precision

Author:

Rahmani AmirORCID,Cox TabithaORCID,Achary Akhila Thamaravelil Abhumanue,Ponjavic AleksORCID

Abstract

Focus stabilisation is vital for long-term fluorescence imaging, particularly in the case of high-resolution imaging techniques. Current stabilisation solutions either rely on fiducial markers that can be perturbative, or on beam reflection monitoring that is limited to high-numerical aperture objective lenses, making multimodal and large-scale imaging challenging. We introduce a beam-based method that relies on astigmatism, which offers advantages in terms of precision and the range over which focus stabilisation is effective. This approach is shown to be compatible with a wide range of objective lenses (10x-100x), typically achieving <10 nm precision with >10 μm operating range. Notably, our technique is largely unaffected by pointing stability errors, which in combination with implementation through a standalone Raspberry Pi architecture, offers a versatile focus stabilisation unit that can be added onto most existing microscope setups.

Funder

Royal Society

Academy of Medical Sciences

Wolfson Foundation

Engineering and Physical Sciences Research Council

Publisher

Optica Publishing Group

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