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Examples

  • UCSB physics researchers Max Hofheinz, John Martinis, and Andrew Cleland used a superconducting electronic circuit known as a Josephson phase qubit to prepare highly unusual quantum states using microwave-frequency photons.

    Gaea Times (by Simple Thoughts) Breaking News and incisive views 24/7 2009

  • UCSB physics researchers Max Hofheinz, John Martinis, and Andrew Cleland used a superconducting electronic circuit known as a Josephson phase qubit to prepare highly unusual quantum states using microwave-frequency photons.

    Gaea Times (by Simple Thoughts) Breaking News and incisive views 24/7 2009

  • UCSB physics researchers Max Hofheinz, John Martinis, and Andrew Cleland used a superconducting electronic circuit known as a Josephson phase qubit to prepare highly unusual quantum states using microwave-frequency photons.

    Gaea Times (by Simple Thoughts) Breaking News and incisive views 24/7 2009

  • In a paper published in the July 17 issue of the journal Nature, UCSB physicists Max Hofheinz, John Martinis, and Andrew Cleland documented how they used a superconducting electronic circuit known as a Josephson phase qubit, developed in Martinis's lab, to controllably pump microwave photons, one at a time, into a superconducting microwave resonator.

    Edhat Santa Barbara 2009

  • n a paper published in the journal Nature, UCSB physics researchers Max Hofheinz, John Martinis, and Andrew Cleland document how they used a superconducting electronic circuit known as a Josephson phase qubit to prepare highly unusual quantum states using microwave-frequency photons.

    Breakthrough In Quantum Control Of Light | Impact Lab 2009

  • In 1962 this led to the prediction of completely new phenomena in superconductors and in particular to the effects generally known as the Josephson effects.

    Press Release: The 1973 Nobel Prize in Physics 1973

  • The other half is awarded to Josephson for his theoretical predictions of properties in a supercurrent flowing through a tunnel barrier, in particular the phenomena generally known as the Josephson effects.

    Press Release: The 1973 Nobel Prize in Physics 1973

  • From that, through a complicated and rather tiresome procedure involving phenomena known as the Josephson effect and the quantum Hall effect, it is possible to express electrical power in terms of h-and so, to calculate h in terms of the balanced mass.

    The Economist: Correspondent's diary 2011

  • The Nobel committee said Novoselev was the youngest physics winner since 1973, when British physicist Brian D. Josephson shared the Nobel for his studies of how an electrical current can tunnel through a barrier, a phenomenon now known as the Josephson effect.

    canada.com Top Stories 2010

  • Solitons can also be found in a so-called Josephson junction, where a thin insulating layer is sandwiched between two superconductors.

    innovations-report 2009

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