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首页> 外文期刊>Journal of optics, B. Quantum and semiclassical optics: Journal of the European Optical Society >Defending continuous variable teleportation: why a laser is a clock, not a quantum channel
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Defending continuous variable teleportation: why a laser is a clock, not a quantum channel

机译:捍卫连续可变的隐形传态:为什么激光是时钟而不是量子通道

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摘要

It has been argued (Rudolph and Sanders 2001 Phys. Rev. Lett. 87 077903) that continuous-variable quantum teleportation at optical frequencies has not been achieved because the source used (a laser) was not 'truly coherent'. Van Enk and Fuchs (2002 Phys. Rev. Lett. 88 027902), while arguing against Rudolph and Sanders, also accept that an 'absolute phase' is achievable, even if it has not been achieved yet. I will argue to the contrary that 'true coherence' or 'absolute phase' is always illusory, as the concept of absolute time (at least for frequencies beyond direct human experience) is meaningless. All we can ever do is to use an agreed time standard. In this context, a laser beam is fundamentally as good a 'clock' as any other. I explain in detail why this claim is true, and defend my argument against various objections. In the process I discuss super-selection rules, quantum channels, and the ultimate limits to the performance of a laser as a clock. For this last topic I use some earlier work by myself (1999 Phys. Rev. A 60 4083) and Berry and myself (2002 Phys. Rev. A 65 043803) to show that a Heisenberg-limited laser with a mean photon number μ can synchronize M independent clocks each with a mean-square error of M~(1/2)/4μ rad~2.
机译:曾经有人争论过(Rudolph and Sanders 2001 Phys。Rev. Lett。87 077903),因为所使用的光源(激光)不是“真正相干的”,所以尚未实现光频率下的连续可变量子隐形传态。 Van Enk and Fuchs(2002 Phys。Rev. Lett。88 027902)反对Rudolph和Sanders时,也接受了“绝对阶段”是可以实现的,即使它尚未实现。我将相反地指出,“真正的连贯性”或“绝对阶段”始终是虚幻的,因为绝对时间(至少对于人类直接经验以外的频率而言)是毫无意义的。我们所能做的就是使用约定的时间标准。在这种情况下,激光束从根本上说与其他时钟一样好。我将详细解释为什么这种说法是正确的,并为各种反对意见辩护。在这个过程中,我将讨论超选择规则,量子通道以及激光器作为时钟的最终极限。对于最后一个主题,我使用我自己(1999年物理修订版A 60 4083)和Berry和我自己(2002年物理修订版A 65 043803)的一些较早的著作来证明,具有平均光子数μ的海森堡受限激光器可以同步M个独立的时钟,每个时钟的均方误差为M〜(1/2)/4μrad〜2。

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