Search Results - "Juniper, Michael P N"

  • Showing 1 - 10 results of 10
Refine Results
  1. 1

    Self-organized dynamics and the transition to turbulence of confined active nematics by Opathalage, Achini, Norton, Michael M., Juniper, Michael P. N., Langeslay, Blake, Aghvami, S. Ali, Fraden, Seth, Dogic, Zvonimir

    “…We study how confinement transforms the chaotic dynamics of bulk microtubule-based active nematics into regular spatiotemporal patterns. For weak confinements…”
    Get full text
    Journal Article
  2. 2

    Dynamic mode locking in a driven colloidal system: experiments and theory by Juniper, Michael P N, Zimmermann, Urs, Straube, Arthur V, Besseling, Rut, Aarts, Dirk G A L, Löwen, Hartmut, Dullens, Roel P A

    Published in New journal of physics (01-01-2017)
    “…In this article we examine the dynamics of a colloidal particle driven by a modulated force over a sinusoidal optical potential energy landscape. Coupling…”
    Get full text
    Journal Article
  3. 3

    Microscopic dynamics of synchronization in driven colloids by Juniper, Michael P.N., Straube, Arthur V., Besseling, Rut, Aarts, Dirk G.A.L., Dullens, Roel P.A.

    Published in Nature communications (21-05-2015)
    “…Synchronization of coupled oscillators has been scrutinized for over three centuries, from Huygens’ pendulum clocks to physiological rhythms. One such…”
    Get full text
    Journal Article
  4. 4

    Acousto-optically generated potential energy landscapes: potential mapping using colloids under flow by Juniper, Michael P N, Besseling, Rut, Aarts, Dirk G A L, Dullens, Roel P A

    Published in Optics express (17-12-2012)
    “…Optical potential energy landscapes created using acousto-optical deflectors are characterized via solvent-driven colloidal particles. The full potential…”
    Get full text
    Journal Article
  5. 5

    Self-organized dynamics and the transition to turbulence of confined active nematics by Opathalage, Achini, Norton, Michael M, Juniper, Michael P. N, Aghvami, S. Ali, Langeslay, Blake, Fraden, Seth, Dogic, Zvonimir

    Published 17-01-2019
    “…We study how confinement transforms the chaotic dynamics of bulk microtubule-based active nematics into regular spatiotemporal patterns. For weak confinements,…”
    Get full text
    Journal Article
  6. 6

    Self-organized dynamics and the transition to turbulence of confined active nematics by Opathalage, Achini, Norton, Michael M., Juniper, Michael P. N., Langeslay, Blake, Aghvami, S. Ali, Fraden, Seth, Dogic, Zvonimir

    “…We study how confinement transforms the chaotic dynamics of bulk microtubule-based active nematics into regular spatiotemporal patterns. For weak confinements…”
    Get full text
    Journal Article
  7. 7

    Dynamic mode locking in a driven colloidal system: experiments and theory by Juniper, Michael P. N, Zimmermann, Urs, Straube, Arthur V, Besseling, Rut, Aarts, Dirk G. A. L, Löwen, Hartmut, Dullens, Roel P. A

    Published 02-11-2016
    “…New J. Phys. 19, 013010 (2017) In this article we examine the dynamics of a colloidal particle driven by a modulated force over a sinusoidal optical potential…”
    Get full text
    Journal Article
  8. 8

    Colloidal particles driven across periodic optical potential energy landscapes by Juniper, Michael P. N, Straube, Arthur V, Aarts, Dirk G. A. L, Dullens, Roel P. A

    Published 17-12-2015
    “…Phys. Rev. E 93, 012608 (2016) We study the motion of colloidal particles driven by a constant force over a periodic optical potential energy landscape…”
    Get full text
    Journal Article
  9. 9

    Dynamics of driven colloidal systems in one-dimensional potential energy landscapes by Juniper, Michael P N

    Published 01-01-2014
    “…The dynamics of colloidal particles driven over optical potential energy landscapes is studied. Experiments are conducted using colloids driven by solvent flow…”
    Get full text
    Dissertation
  10. 10

    Dynamics of driven colloidal systems in one-dimensional potential energy landscapes by Juniper, Michael P. N

    Published 01-01-2014
    “…The dynamics of colloidal particles driven over optical potential energy landscapes is studied. Experiments are conducted using colloids driven by solvent flow…”
    Get full text
    Dissertation