4.8 Article

Super-resolution enhancement by quantum image scanning microscopy

期刊

NATURE PHOTONICS
卷 13, 期 2, 页码 116-+

出版社

NATURE PUBLISHING GROUP
DOI: 10.1038/s41566-018-0324-z

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资金

  1. ERC
  2. ERC-POC project 'SFICAM'
  3. ICore program of the ISF
  4. Crown Photonics Center
  5. Israeli ministry of science Tashtiyot program
  6. National Science Centre (Poland) [2015/17/D/ST2/03471, 2015/16/S/ST2/00424]
  7. Polish Ministry of Science and Higher Education
  8. Foundation for Polish Science
  9. European Union under the European Regional Development Fund
  10. ERC consolidator grant ColloQuanto
  11. ERC grant QUAMI

向作者/读者索取更多资源

The principles of quantum optics have yielded a plethora of ideas to surpass the classical limitations of sensitivity and resolution in optical microscopy. While some ideas have been applied in proof-of-principle experiments, imaging a biological sample has remained challenging, mainly due to the inherently weak signal measured and the fragility of quantum states of light. In principle, however, these quantum protocols can add new information without sacrificing the classical information and can therefore enhance the capabilities of existing super-resolution techniques. Image scanning microscopy, a recent addition to the family of super-resolution methods, generates a robust resolution enhancement without reducing the signal level. Here, we introduce quantum image scanning microscopy: combining image scanning microscopy with the measurement of quantum photon correlation allows increasing the resolution of image scanning microscopy up to twofold, four times beyond the diffraction limit. We introduce the Q-ISM principle and obtain super-resolved optical images of a biological sample stained with fluores-cent quantum dots using photon antibunching, a quantum effect, as a resolution-enhancing contrast mechanism.

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