Search Results - "Banzer, P."

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  1. 1

    Transverse spinning of unpolarized light by Eismann, J. S., Nicholls, L. H., Roth, D. J., Alonso, M. A., Banzer, P., Rodríguez-Fortuño, F. J., Zayats, A. V., Nori, F., Bliokh, K. Y.

    Published in Nature photonics (01-02-2021)
    “…It is well known that the spin angular momentum of light, and therefore that of photons, is directly related to their circular polarization. Naturally, for…”
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    Journal Article
  2. 2

    Influence of the substrate material on the knife-edge based profiling of tightly focused light beams by Huber, C, Orlov, S, Banzer, P, Leuchs, G

    Published in Optics express (18-04-2016)
    “…The performance of the knife-edge method as a beam profiling technique for tightly focused light beams depends on several parameters, such as the material and…”
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    Journal Article
  3. 3

    Entangling different degrees of freedom by quadrature squeezing cylindrically polarized modes by Gabriel, C, Aiello, A, Zhong, W, Euser, T G, Joly, N Y, Banzer, P, Förtsch, M, Elser, D, Andersen, U L, Marquardt, Ch, Russell, P St J, Leuchs, G

    Published in Physical review letters (11-02-2011)
    “…Quantum systems such as, for example, photons, atoms, or Bose-Einstein condensates, prepared in complex states where entanglement between distinct degrees of…”
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    Journal Article
  4. 4

    The photonic wheel - demonstration of a state of light with purely transverse angular momentum by Banzer, P., Neugebauer, M., Aiello, A., Marquardt, C., Lindlein, N., Bauer, T., Leuchs, G.

    “…In classical mechanics, a system may possess angular momentum which can be either transverse (e.g. in a spinning wheel) or longitudinal (e.g. for a spiraling…”
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    Journal Article
  5. 5

    Corrections to the knife-edge based reconstruction scheme of tightly focused light beams by Huber, C, Orlov, S, Banzer, P, Leuchs, G

    Published in Optics express (21-10-2013)
    “…The knife-edge method is an established technique for profiling light beams. It was shown, that this technique even works for tightly focused beams, if the…”
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    Journal Article
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    Lattice-plasmon-induced asymmetric transmission in two-dimensional chiral arrays by Apurv Chaitanya, N., Butt, M. A. T., Reshef, O., Boyd, Robert W., Banzer, P., De Leon, Israel

    Published in APL photonics (01-01-2022)
    “…Asymmetric transmission—direction-selective electromagnetic transmission between two ports—is a phenomenon exhibited by two-dimensional chiral systems. The…”
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    Journal Article
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    Interaction of highly focused vector beams with a metal knife-edge by Marchenko, P, Orlov, S, Huber, C, Banzer, P, Quabis, S, Peschel, U, Leuchs, G

    Published in Optics express (11-04-2011)
    “…We investigate the interaction of highly focused linearly polarized optical beams with a metal knife-edge both theoretically and experimentally. A high…”
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    Journal Article
  10. 10

    Geometric Spin Hall Effect of Light at polarizing interfaces by Korger, J., Aiello, A., Gabriel, C., Banzer, P., Kolb, T., Marquardt, C., Leuchs, G.

    Published in Applied physics. B, Lasers and optics (01-03-2011)
    “…The geometric Spin Hall Effect of Light (geometric SHEL) amounts to a polarization-dependent positional shift when a light beam is observed from a reference…”
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    Journal Article
  11. 11

    Waveguide properties of single subwavelength holes demonstrated with radially and azimuthally polarized light by KINDLER, J, BANZER, P, QUABIS, S, PESCHEL, U, LEUCHS, G

    Published in Applied physics. B, Lasers and optics (01-12-2007)
    “…We investigate the transmission of focused beams through single subwavelength holes in a silver film. We use radially and azimuthally polarized light to excite…”
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    Conference Proceeding Journal Article
  12. 12

    Diffraction-assisted asymmetric transmission in a plasmonic metasurface by Chaitanya, N. Apurv, Butt, M. A., Reshef, O., Boyd, R.W., Banzer, P., Leon, I. De

    “…In this report we show that a diffractive metasurface consisting of 4-fold rotation symmetric plasmonic nanostructures can exhibit asymmetric transmission…”
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    Conference Proceeding
  13. 13

    On the experimental investigation of the electric and magnetic response of a single nano-structure by Banzer, Peter, Peschel, Ulf, Quabis, Susanne, Leuchs, Gerd

    Published in Optics express (10-05-2010)
    “…We demonstrate an experimental method to separately test the optical response of a single sub-wavelength nano-structure to tailored electric and magnetic field…”
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    Journal Article
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    Extraordinary transmission through a single coaxial aperture in a thin metal film by Banzer, Peter, Kindler, Jochen, Quabis, Susanne, Peschel, Ulf, Leuchs, Gerd

    Published in Optics express (10-05-2010)
    “…We investigate experimentally the transmission properties of single sub-wavelength coaxial apertures in thin metal films (t = 110 nm). Enhanced transmission…”
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    Journal Article
  16. 16

    Experimental cross-polarization detection of coupling far-field lightto highly confined plasmonic gap modes via nanoantennas by Wen, J., Banzer, P., Kriesch, A., Ploss, D., Schmauss, B., Peschel, U.

    Published in Applied physics letters (10-03-2011)
    “…We experimentally demonstrate the coupling of far-field light to highly confined plasmonic gap modes via connected nanoantennas. The excitation of plasmonic…”
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    Journal Article
  17. 17

    Low cost 3D printable metamaterial for focused orbital angular momentum generation using mm-wave radar chip technology by Tofferl, M., Schossmann, A., Bergmann, A., Banzer, P.

    “…We present a metamaterial for orbital angular momentum generation in the millimeter wave regime that can be fabricated with low-cost fused deposition modeling…”
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    Conference Proceeding
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    Nanobore PCF maintaining cylindrically polarized modes by Euser, T G, Joly, N Y, Gabriel, C, Marquardt, C, Zang, L Y, Banzer, P, Brenn, A, Elser, D, Förtsch, M, Rammler, S, Scharrer, M, Leuchs, G, Russell, P St J

    “…A nanoscale hole placed centrally in the core of a PCF breaks the degeneracy between radially and azimuthally polarized modes, causing a large splitting in…”
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    Conference Proceeding
  20. 20

    Subwavelength plasmonic directional couplers for nonlinear switching and wavelength division by Kriesch, A., Ploss, D., Jing Wen, Banzer, P., Peschel, U.

    “…Plasmonic gap waveguides allow for subwavelength integration of optical circuitry. A side effect is extraordinarily high field enhancement. Here we present…”
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    Conference Proceeding