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Nonclassical excitation and quantum interference in a three level atom.

机译:三能级原子中的非经典激发和量子干扰。

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Non-classical properties and quantum interference (QI) in two-photon excitation of a three level atom {dollar}(vert 1rangle, vert 2rangle, vert3rangle){dollar} in a ladder configuration, illuminated by multiple fields in non-classical (squeezed) and/or classical (coherent) states, is studied. Fundamentally new effects associated with quantum correlations in the squeezed fields and QI due to multiple excitation pathways have been observed. Theoretical studies and extrapolations of these findings have revealed possible applications which are far beyond any current capabilities, including ultrafast nonlinear mixing, ultrafast homodyne detection and frequency metrology. The atom used throughout the experiments was Cesium, which was magneto-optically trapped in a vapor cell to produce a Doppler-free sample. For the first part of the work the {dollar}vert1rangletovert2rangletovert3rangle{dollar} transition (corresponding to the {dollar}6Ssb{lcub}1/2{rcub}F=4to6Psb{lcub}3/2{rcub}Fspprime=5to 6Dsb{lcub}5/2{rcub}Fsp{lcub}primeprime{rcub}=6{dollar} transition) was excited by using the quantum-correlated signal {dollar}({lcub}cal E{rcub}sb{lcub}s{rcub}){dollar} and idler {dollar}({lcub}cal E{rcub}sb{lcub}i{rcub}){dollar} output fields of a subthreshold non-degenerate optical parametric oscillator, which was tuned so that the signal and idler fields were resonant with the {dollar}vert 1rangletovert 2rangle{dollar} and {dollar}vert2rangletovert3rangle{dollar} transitions, respectively. In contrast to excitation with classical fields for which the excitation rate as a function of intensity has always an exponent greater than or equal to two, excitation with squeezed-fields has been theoretically predicted to have an exponent that approaches unity for small enough intensities. This was verified experimentally by probing the exponent down to a slope of 1.3, demonstrating for the first time a purely non-classical effect associated with the interaction of squeezed fields and atoms. In the second part excitation of the two-photon transition by three phase coherent fields {dollar}{lcub}cal E{rcub}sb1,{lcub}cal E{rcub}sb2{dollar} and {dollar}{lcub}cal E{rcub}sb0,{dollar} resonant with the dipole {dollar}vert1rangletovert2rangle{dollar} and {dollar}vert2rangletovert3rangle{dollar} and quadrupole {dollar}vert1rangletovert3rangle{dollar} transitions, respectively, is studied. QI in the excited state population is observed due to two alternative excitation pathways. This is equivalent to nonlinear mixing of the three excitation fields by the atom. Realizing that in the experiment the three fields are spaced in frequency over a range of 25 THz, and extending this scheme to other energy triplets and atoms, leads to the discovery that ranges up to 100's of THz can be bridged in a single mixing step. Motivated by these results, a master equation model has been developed for the system and its properties have been extensively studied.
机译:三能级原子{dol}}(vert 1rangle,vert 2rangle,vert3rangle){dollar} {dollar}的双光子激发的非经典性质和量子干扰(QI),以非经典(压缩)的多个场照亮和/或经典(相干)状态。从根本上已经观察到由于多个激发途径而与压缩场和QI中的量子相关性相关的新效应。对这些发现进行的理论研究和推断已经揭示了可能的应用,这些应用远远超出了当前的能力,包括超快速非线性混合,超快速零差检测和频率计量。在整个实验中使用的原子是铯,将其磁光捕获在蒸气室中以生成不含多普勒的样品。在工作的第一部分,{dollar} vert1rangletovert2rangletovert3rangle {dollar}转换(对应于{dollar} 6Ssb {lcub} 1/2 {rcub} F = 4to6Psb {lcub} 3/2 {rcub} Fspprime = 5至6Dsb {通过使用量子相关信号{dollar}({lcub} cal E {rcub} sb {lcub} s {lcub} 5/2 {rcub} Fsp {lcub} primeprime {rcub} = 6 {dollar} transition}激发了rcub}} {dollar}和惰轮{dollar}({lcub} cal E {rcub} sb {lcub} i {rcub}){dollar}亚阈值非退化光学参量振荡器的输出场,对其进行了调整,信号和惰轮场分别与{dol} vert 1rangletovert 2rangle {dollar}和{dollar} vert2rangletovert3rangle {dollar}跃变共振。与经典场的激励相比,经典场的激励率作为强度的函数始终具有大于或等于2的指数,而从理论上讲,用压缩场激励的指数对于足够小的强度具有趋近于单位的指数。通过探查指数下降到1.3的斜率进行了实验验证,这是首次证明了与压缩场和原子相互作用相关的纯非经典效应。在第二部分中,通过三相相干场{dollar} {lcub} cal E {rcub} sb1,{lcub} cal E {rcub} sb2 {dollar}和{dollar} {lcub} cal E激发双光子跃迁研究了与偶极子{dollar} vert1rangletovert2rangle {dollar}和{dollar} vert2rangletovert3rangle {dollar}和四极子{dollar} vert1rangletovert3rangle {dollar}跃变共振的{rcub} sb0,{dollar}。由于两个替代的激发途径,在激发态种群中观察到QI。这等效于原子对三个激发场的非线性混合。意识到在实验中这三个场在25 THz的频率范围内间隔开,并将该方案扩展到其他能量三重态和原子,导致发现可以在单个混合步骤中桥接高达100'THz的范围。基于这些结果,为该系统开发了一个主方程模型,并对其性能进行了广泛的研究。

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