Kwiat P G, Berglund A J, Altepeter J B, White A G
Physics Division, P-23, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Science. 2000 Oct 20;290(5491):498-501. doi: 10.1126/science.290.5491.498.
Using spontaneous parametric down-conversion, we produce polarization-entangled states of two photons and characterize them using two-photon tomography to measure the density matrix. A controllable decoherence is imposed on the states by passing the photons through thick, adjustable birefringent elements. When the system is subject to collective decoherence, one particular entangled state is seen to be decoherence-free, as predicted by theory. Such decoherence-free systems may have an important role for the future of quantum computation and information processing.
利用自发参量下转换,我们产生了两个光子的偏振纠缠态,并使用双光子层析成像来测量密度矩阵以对其进行表征。通过使光子穿过厚的、可调节的双折射元件,可控的退相干被施加到这些态上。当系统受到集体退相干影响时,如理论所预测的,一种特定的纠缠态被发现是无退相干的。这种无退相干系统可能在量子计算和信息处理的未来发展中发挥重要作用。