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CONTACT TYPE PLASMONIC NANO OPTICAL PROBE, PARALLEL PROBE CONSTITUTED OF THE SAME, PLASMONIC OPTICAL APPARATUS INCLUDING THE PARALLEL PROBE, AND A METHOD OF FABRICATING THE PARALLEL PROBE
CONTACT TYPE PLASMONIC NANO OPTICAL PROBE, PARALLEL PROBE CONSTITUTED OF THE SAME, PLASMONIC OPTICAL APPARATUS INCLUDING THE PARALLEL PROBE, AND A METHOD OF FABRICATING THE PARALLEL PROBE
A contact type plasmonic nano optical probe, a parallel probe constituted of the same, a plasmonic optical apparatus including the parallel probe, and a method of fabricating the parallel probe are disclosed. A contact type plasmonic nano optical probe includes a probe tip which protrudes in a truncated shape having a narrower plan surface and a wider plan surface relatively wider than the narrower plan surface, of which a metal thin film is coated on a surface, of and which an aperture of nm diameter included in a portion of the metal thin film on a central portion of the narrower plan surface, a spring structure disposed at a perimeter of the probe tip and configured to maintain a distance between the probe tip and a film to be exposed, a dielectric filled within the aperture, and a protection layer disposed on the narrower plan surface of the probe tip. Here, an optical transport path is included within the probe tip to be connected to the aperture. A plasmonic optical apparatus including a parallel plasmonic probe is constituted of a probe array including a plurality of probe modules in which the contact type plasmonic nano optical probes are disposed at a uniform distance on a substrate.
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