Search Results - "van Otten, Frank W. M"

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  1. 1

    Integrated nano-opto-electro-mechanical sensor for spectrometry and nanometrology by Zobenica, Žarko, van der Heijden, Rob W., Petruzzella, Maurangelo, Pagliano, Francesco, Leijssen, Rick, Xia, Tian, Midolo, Leonardo, Cotrufo, Michele, Cho, YongJin, van Otten, Frank W. M., Verhagen, Ewold, Fiore, Andrea

    Published in Nature communications (20-12-2017)
    “…Spectrometry is widely used for the characterization of materials, tissues, and gases, and the need for size and cost scaling is driving the development of…”
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    Journal Article
  2. 2

    Lasing in metallic-coated nanocavities by Hill, Martin T, Oei, Yok-Siang, Smalbrugge, Barry, Zhu, Youcai, de Vries, Tjibbe, van Veldhoven, Peter J, van Otten, Frank W. M, Eijkemans, Tom J, Turkiewicz, Jaros aw P, de Waardt, Huug, Geluk, Erik Jan, Kwon, Soon-Hong, Lee, Yong-Hee, Nötzel, Richard, Smit, Meint K

    Published in Nature photonics (01-10-2007)
    “…Metallic cavities can confine light to volumes with dimensions considerably smaller than the wavelength of light. It is commonly believed, however, that the…”
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    Journal Article
  3. 3

    Mechanical and Electric Control of Photonic Modes in Random Dielectrics by Balestri, Dario, Petruzzella, Maurangelo, Checcucci, Simona, Intonti, Francesca, Caselli, Niccolò, Sgrignuoli, Fabrizio, Otten, Frank W. M., Fiore, Andrea, Gurioli, Massimo

    Published in Advanced materials (Weinheim) (01-03-2019)
    “…Random dielectrics defines a class of non‐absorbing materials where the index of refraction is randomly arranged in space. Whenever the transport mean free…”
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    Journal Article
  4. 4

    Self-aligned epitaxial metal-semiconductor hybrid nanostructures for plasmonics by Urbańczyk, Adam, van Otten, Frank W. M., Nötzel, Richard

    Published in Applied physics letters (13-06-2011)
    “…We demonstrate self-alignment of epitaxial Ag nanocrystals on top of low-density near-surface InAs quantum dots (QDs) grown by molecular beam epitaxy. The Ag…”
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  5. 5

    Dielectrics: Mechanical and Electric Control of Photonic Modes in Random Dielectrics (Adv. Mater. 12/2019) by Balestri, Dario, Petruzzella, Maurangelo, Checcucci, Simona, Intonti, Francesca, Caselli, Niccolò, Sgrignuoli, Fabrizio, Otten, Frank W. M., Fiore, Andrea, Gurioli, Massimo

    Published in Advanced materials (Weinheim) (01-03-2019)
    “…Double‐membrane disordered dielectric devices with embedded quantum dots allow reversible and large spectral tuning of localized random photonic modes at…”
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    Journal Article
  6. 6

    Formation of stacked linear InAs quantum dot arrays on InGaAsP/InP(100) by self-organized anisotropic strain engineering by Sritirawisarn, Nut, van Otten, Frank W. M., Eijkemans, Tom J., Nötzel, Richard

    Published in Physica Status Solidi (b) (01-04-2009)
    “…We have previously demonstrated the formation of linear InAs quantum dot (QD) arrays based on self‐organized anisotropic strain engineering of InAs/InGaAsP…”
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    Journal Article
  7. 7

    Demonstration of atomic force microscopy imaging using an integrated opto-electro-mechanical transducer by Galeotti, Federico, Lindgren, Gustav, Petruzzella, Maurangelo, van Otten, Frank W.M., Sadeghian Marnani, Hamed, Mohtashami, Abbas, van der Heijden, Rob, Fiore, Andrea

    Published in Ultramicroscopy (01-11-2021)
    “…•Novel integrated Nano-Opto-Electro-Mechanical AFM sensor.•On-chip, waveguide-coupled, resonant cavity photodetector AFM readout.•Ultrasmall sensing element…”
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    Journal Article
  8. 8
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  10. 10

    Self-aligned epitaxial metal-semiconductor hybrid nanostructuresfor plasmonics by Urbańczyk, Adam, van Otten, Frank W. M., Nötzel, Richard

    Published in Applied physics letters (13-06-2011)
    “…We demonstrate self-alignment of epitaxial Ag nanocrystals on top of low-density near-surface InAs quantum dots (QDs) grown by molecular beam epitaxy. The Ag…”
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    Journal Article
  11. 11

    On-chip waveguide-coupled opto-electro-mechanical system for nanoscale displacement sensing by Galeotti, Federico, Seršić Vollenbroek, Ivana, Petruzzella, Maurangelo, Pagliano, Francesco, van Otten, Frank W. M., Zobenica, Žarko, Mohtashami, Abbas, Marnani, Hamed Sadeghian, van der Heijden, Rob W., Fiore, Andrea

    Published in APL photonics (01-02-2020)
    “…Miniaturization of displacement sensors for nanoscale metrology is a key requirement in many applications such as accelerometry, mass sensing, and atomic force…”
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    Journal Article
  12. 12

    Combining selective area growth and self-organized strain engineering for site-controlled local InAs/InP quantum dot arrays by Wang, Jia, Yuan, Jiayue, van Otten, Frank W.M., Nötzel, Richard

    Published in Journal of crystal growth (15-11-2011)
    “…Ordered InAs quantum dot (QD) arrays are formed by self-organized anisotropic strain engineering of an InAs/InGaAsP superlattice template on truncated InP…”
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    Journal Article
  13. 13

    Integration of Single-Photon Sources and Detectors on GaAs by Digeronimo, Giulia, Petruzzella, Maurangelo, Birindelli, Simone, Gaudio, Rosalinda, Fattah Poor, Sartoon, van Otten, Frank, Fiore, Andrea

    Published in Photonics (01-12-2016)
    “…Quantum photonic integrated circuits (QPICs) on a GaAs platform allow the generation, manipulation, routing, and detection of non-classical states of light,…”
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    Journal Article
  14. 14

    Integrated Optomechanical Displacement Sensor Based on a Photonic Crystal Cavity by Galeotti, Federico, Sersic-Vollenbroek, Ivana, Petruzzella, Maurangelo, Pagliano, Francesco, Zobenica, Zarko, Van Otten, Frank W.M., Marnani, Hamed Sadeghian, Van der Heijden, Rob, Fiore, Andrea

    “…Displacement sensing at the nanoscale is required in many applications, including accelerometry, mass sensing and atomic force microscopy. Miniaturization of…”
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    Conference Proceeding
  15. 15

    Tuneable quantum light from a photonic crystal LED by Petruzzella, Maurangelo, Pagliano, Francesco, Zobenica, Zarko, Birindelli, Simone, Cotrufo, Michele, van Otten, Frank W. M., van der Heijden, Rob W., Fiore, Andrea

    “…Summary form only given. Pure and deterministic single-photon sources, obtained by coupling a semiconductor quantum dot (QD) to a photonic crystal (PhC)…”
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    Conference Proceeding