Nano-antennae assisted emission of extreme ultraviolet radiation

Publikation: Beitrag in FachzeitschriftÜbersichtsarbeitForschungPeer-Review

Autorschaft

  • Nils Pfullmann
  • Monika Noack
  • Stefan Rausch
  • Tamas Nagy
  • Carsten Reinhardt
  • Vanessa Knittel
  • Rudolf Bratschitsch
  • Alfred Leitenstorfer
  • Dieter Akemeier
  • Andreas Ḧutten
  • Milutin Kovacev
  • Uwe Morgner
  • José Ricardo Cardoso de Andrade

Externe Organisationen

  • Laser Zentrum Hannover e.V. (LZH)
  • Universität Konstanz
  • Universität Bielefeld
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Details

OriginalspracheEnglisch
Seiten (von - bis)119-134
Seitenumfang16
FachzeitschriftAnnalen der Physik
Jahrgang526
Ausgabenummer3-4
PublikationsstatusVeröffentlicht - 8 Apr. 2014

Abstract

High-order harmonic generation in xenon with oscillator repetition rates is studied. The necessary intensity is reached via plasmonic field enhancement at nanostructured arrays of bow-tie gold antennae. The theoretical analysis focuses on the thermal properties and the damage threshold of the bow-tie antennae. On the experimental side the number of contributing atoms is determined and optimized. Extreme ultraviolet radiation is successfully observed with photon fluxes almost an order of magnitude larger than previously reported.

ASJC Scopus Sachgebiete

Zitieren

Nano-antennae assisted emission of extreme ultraviolet radiation. / Pfullmann, Nils; Noack, Monika; Rausch, Stefan et al.
in: Annalen der Physik, Jahrgang 526, Nr. 3-4, 08.04.2014, S. 119-134.

Publikation: Beitrag in FachzeitschriftÜbersichtsarbeitForschungPeer-Review

Pfullmann, N, Noack, M, Rausch, S, Nagy, T, Reinhardt, C, Knittel, V, Bratschitsch, R, Leitenstorfer, A, Akemeier, D, Ḧutten, A, Kovacev, M, Morgner, U & Cardoso de Andrade, JR 2014, 'Nano-antennae assisted emission of extreme ultraviolet radiation', Annalen der Physik, Jg. 526, Nr. 3-4, S. 119-134. https://doi.org/10.1002/andp.201400021
Pfullmann, N., Noack, M., Rausch, S., Nagy, T., Reinhardt, C., Knittel, V., Bratschitsch, R., Leitenstorfer, A., Akemeier, D., Ḧutten, A., Kovacev, M., Morgner, U., & Cardoso de Andrade, J. R. (2014). Nano-antennae assisted emission of extreme ultraviolet radiation. Annalen der Physik, 526(3-4), 119-134. https://doi.org/10.1002/andp.201400021
Pfullmann N, Noack M, Rausch S, Nagy T, Reinhardt C, Knittel V et al. Nano-antennae assisted emission of extreme ultraviolet radiation. Annalen der Physik. 2014 Apr 8;526(3-4):119-134. doi: 10.1002/andp.201400021
Pfullmann, Nils ; Noack, Monika ; Rausch, Stefan et al. / Nano-antennae assisted emission of extreme ultraviolet radiation. in: Annalen der Physik. 2014 ; Jahrgang 526, Nr. 3-4. S. 119-134.
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T1 - Nano-antennae assisted emission of extreme ultraviolet radiation

AU - Pfullmann, Nils

AU - Noack, Monika

AU - Rausch, Stefan

AU - Nagy, Tamas

AU - Reinhardt, Carsten

AU - Knittel, Vanessa

AU - Bratschitsch, Rudolf

AU - Leitenstorfer, Alfred

AU - Akemeier, Dieter

AU - Ḧutten, Andreas

AU - Kovacev, Milutin

AU - Morgner, Uwe

AU - Cardoso de Andrade, José Ricardo

PY - 2014/4/8

Y1 - 2014/4/8

N2 - High-order harmonic generation in xenon with oscillator repetition rates is studied. The necessary intensity is reached via plasmonic field enhancement at nanostructured arrays of bow-tie gold antennae. The theoretical analysis focuses on the thermal properties and the damage threshold of the bow-tie antennae. On the experimental side the number of contributing atoms is determined and optimized. Extreme ultraviolet radiation is successfully observed with photon fluxes almost an order of magnitude larger than previously reported.

AB - High-order harmonic generation in xenon with oscillator repetition rates is studied. The necessary intensity is reached via plasmonic field enhancement at nanostructured arrays of bow-tie gold antennae. The theoretical analysis focuses on the thermal properties and the damage threshold of the bow-tie antennae. On the experimental side the number of contributing atoms is determined and optimized. Extreme ultraviolet radiation is successfully observed with photon fluxes almost an order of magnitude larger than previously reported.

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DO - 10.1002/andp.201400021

M3 - Review article

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VL - 526

SP - 119

EP - 134

JO - Annalen der Physik

JF - Annalen der Physik

SN - 0003-3804

IS - 3-4

ER -

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