3D Super-Resolution Optical Profiling Using Microsphere Enhanced Mirau Interferometry

We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric microscope, enhanced with a microsphere which is considered as a photonic nanojet source. Along the optical axis the resolution of this microsphere assisted i...

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Published inScientific reports Vol. 7; no. 1; pp. 3683 - 7
Main Authors Kassamakov, Ivan, Lecler, Sylvain, Nolvi, Anton, Leong-Hoï, Audrey, Montgomery, Paul, Hæggström, Edward
Format Journal Article
LanguageEnglish
Published England Nature Publishing Group 16.06.2017
Nature Publishing Group UK
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Abstract We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric microscope, enhanced with a microsphere which is considered as a photonic nanojet source. Along the optical axis the resolution of this microsphere assisted interferometry system is a few nanometers while the lateral resolution is around 112 nm. To understand the physical phenomena involved in this kind of imaging we have modelled the interaction between the photonic jet and the complex disc surface. Agreement between simulation and experimental results is demonstrated. We underline that although the ability of the microsphere to generate a photonic nanojet does not alone explain the resolution of the interferometer, the nanojet can be used to try to understand the imaging process. To partly explain the lateral super-resolution, the potential role of coherence is illustrated. The presented modality may have a large impact on many fields from bio-medicine to nanotechnology.
AbstractList We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric microscope, enhanced with a microsphere which is considered as a photonic nanojet source. Along the optical axis the resolution of this microsphere assisted interferometry system is a few nanometers while the lateral resolution is around 112 nm. To understand the physical phenomena involved in this kind of imaging we have modelled the interaction between the photonic jet and the complex disc surface. Agreement between simulation and experimental results is demonstrated. We underline that although the ability of the microsphere to generate a photonic nanojet does not alone explain the resolution of the interferometer, the nanojet can be used to try to understand the imaging process. To partly explain the lateral super-resolution, the potential role of coherence is illustrated. The presented modality may have a large impact on many fields from bio-medicine to nanotechnology.
Abstract We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric microscope, enhanced with a microsphere which is considered as a photonic nanojet source. Along the optical axis the resolution of this microsphere assisted interferometry system is a few nanometers while the lateral resolution is around 112 nm. To understand the physical phenomena involved in this kind of imaging we have modelled the interaction between the photonic jet and the complex disc surface. Agreement between simulation and experimental results is demonstrated. We underline that although the ability of the microsphere to generate a photonic nanojet does not alone explain the resolution of the interferometer, the nanojet can be used to try to understand the imaging process. To partly explain the lateral super-resolution, the potential role of coherence is illustrated. The presented modality may have a large impact on many fields from bio-medicine to nanotechnology.
Abstract We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric microscope, enhanced with a microsphere which is considered as a photonic nanojet source. Along the optical axis the resolution of this microsphere assisted interferometry system is a few nanometers while the lateral resolution is around 112 nm. To understand the physical phenomena involved in this kind of imaging we have modelled the interaction between the photonic jet and the complex disc surface. Agreement between simulation and experimental results is demonstrated. We underline that although the ability of the microsphere to generate a photonic nanojet does not alone explain the resolution of the interferometer, the nanojet can be used to try to understand the imaging process. To partly explain the lateral super-resolution, the potential role of coherence is illustrated. The presented modality may have a large impact on many fields from bio-medicine to nanotechnology.
ArticleNumber 3683
Author Lecler, Sylvain
Leong-Hoï, Audrey
Hæggström, Edward
Nolvi, Anton
Kassamakov, Ivan
Montgomery, Paul
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  givenname: Sylvain
  surname: Lecler
  fullname: Lecler, Sylvain
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  givenname: Anton
  surname: Nolvi
  fullname: Nolvi, Anton
  organization: University of Helsinki, Helsinki, Finland
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  surname: Leong-Hoï
  fullname: Leong-Hoï, Audrey
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  fullname: Hæggström, Edward
  organization: University of Helsinki, Helsinki, Finland
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Snippet We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric microscope,...
Abstract We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric...
Abstract We present quantitative three dimensional images of grooves on a writable Blu-ray Disc based on a single objective Mirau type interferometric...
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SubjectTerms Engineering Sciences
Interferometry
Optics
Photonic
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Title 3D Super-Resolution Optical Profiling Using Microsphere Enhanced Mirau Interferometry
URI https://www.ncbi.nlm.nih.gov/pubmed/28623289
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https://search.proquest.com/docview/1910799438
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https://pubmed.ncbi.nlm.nih.gov/PMC5473836
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Volume 7
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