Freezing liquid inside optical fibre makes light and sound interact more than 1,000 times more strongly
- Representational photo of a frozen optical fiber core in a glass capillary, which guides and couples light and sound waves efficiently.
- (Science Daily picture)Freezing liquid inside an optical fibre has helped scientists create an unusual environment where light and sound can interact more than 1,000 times more strongly than they do in ordinary optical fibres.
- According to Science Daily, scientists from the Max Planck Institute of the Science of Light (MPL) in Erlangen, Leibniz University Hannover (LUH) and the Leibniz Institute for Photonic Technologies (IPHT) in Jena, cooled the liquid inside
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- Representational photo of a frozen optical fiber core in a glass capillary, which guides and couples light and sound waves efficiently.
- (Science Daily picture)Freezing liquid inside an optical fibre has helped scientists create an unusual environment where light and sound can interact more than 1,000 times more strongly than they do in ordinary optical fibres.
- According to Science Daily, scientists from the Max Planck Institute of the Science of Light (MPL) in Erlangen, Leibniz University Hannover (LUH) and the Leibniz Institute for Photonic Technologies (IPHT) in Jena, cooled the liquid inside
Sources: Times of India