Coherent near field optical microscopy
The light scattering from a single resonant molecule, or nano-sized particle located near the tip of an apertureless scanning near-field microscope is studied, and different regimes of scattering are analyzed. The tip enhances the external field, and serves as an efficient transmission `antenna'...
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Published in | Optics communications Vol. 174; no. 1; pp. 33 - 41 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Amsterdam
Elsevier B.V
15.01.2000
Elsevier Science |
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Abstract | The light scattering from a single resonant molecule, or nano-sized particle located near the tip of an apertureless scanning near-field microscope is studied, and different regimes of scattering are analyzed. The tip enhances the external field, and serves as an efficient transmission `antenna' for the molecular dipole oscillations. The light scattering occurs via two channels: direct scattering from the tip, and tip-mediated molecular scattering. The total detected intensity of the scattered light shows interference of the channels, which we suggest to use for efficient near-field microscopy. At certain detunings from resonances the scanning signal experiences spatial narrowing similar to that one observed in two-photon microscopy, thus allowing for sub-nanometer resolution. |
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AbstractList | The light scattering from a single resonant molecule, or nano-sized particle located near the tip of an apertureless scanning near-field microscope is studied, and different regimes of scattering are analyzed. The tip enhances the external field, and serves as an efficient transmission 'antenna' for the molecular dipole oscillations. The light scattering occurs via two channels: direct scattering from the tip, and tip-mediated molecular scattering. The total detected intensity of the scattered light shows interference of the channels, which we suggest to use for efficient near-field microscopy. At certain detunings from resonances the scanning signal experiences spatial narrowing similar to that one observed in two-photon microscopy, thus allowing for sub-nanometer resolution. |
Author | Sedletsky, O.A. Prior, Y. Averbukh, I.Sh Chernobrod, B.M. |
Author_xml | – sequence: 1 givenname: I.Sh surname: Averbukh fullname: Averbukh, I.Sh – sequence: 2 givenname: B.M. surname: Chernobrod fullname: Chernobrod, B.M. – sequence: 3 givenname: O.A. surname: Sedletsky fullname: Sedletsky, O.A. – sequence: 4 givenname: Y. surname: Prior fullname: Prior, Y. |
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Keywords | Apertureless SNOM 87.64.Xx Field enhancement 41.20.Cv Light scattering Single molecules Electromagnetic wave scattering Apertureless probe Experimental study Spatial resolution Scanning near field optical microscopy Single molecule |
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SubjectTerms | Apertureless SNOM Exact sciences and technology Field enhancement Instruments, apparatus, components and techniques common to several branches of physics and astronomy Light scattering Near-field scanning optical microscopes Physics Scanning probe microscopes, components and techniques Single molecules |
Title | Coherent near field optical microscopy |
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