Fast Sampling of Atomic Velocities by Incoherent Light Stimulated Photon Echoes

M. Defour, J. Keller, J. L. Gouët
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Abstract

It has been recently pointed out that incoherent light can be used to generate coherent optical transients and that there are decided advantages in using such broad-band non-laser source to achieve very high time resolution {1,2}. When a light pulse and its time-delayed replica interact with a sample to produce the non-linear optical response, the ultimate time resolution should identify with the correlation time τC of the light field rather than with the pulse duration τL. The situation where τC ≪ τL is easily obtained with broad-band incoherent light sources. Time resolution in the femtosecond range is then attainable using nanosecond light pulses. This has been recently demonstrated through the observation of the relaxation of photon echoes in Nd3+-doped silicate glass {1,2}. In these cases, attention is focused on the measurement of fast homogeneous decay rates and the inhomogeneous broadening ΩD is assumed to be much larger than the spectral width of the excitation light.
非相干光激发光子回波对原子速度的快速采样
最近有人指出,非相干光可以用来产生相干光瞬态,并且使用这种宽带非激光源具有明显的优势,可以实现非常高的时间分辨率{1,2}。当光脉冲及其时间延迟副本与样品相互作用产生非线性光学响应时,最终时间分辨率应与光场的相关时间τC而不是与脉冲持续时间τL相一致。利用宽带非相干光源很容易获得τC≪τL的情况。在飞秒范围内的时间分辨率可以使用纳秒光脉冲来实现。最近通过对掺Nd3+硅酸盐玻璃{1,2}中光子回波弛豫的观察证明了这一点。在这些情况下,注意力集中在快速均匀衰减率的测量上,并且假设非均匀展宽ΩD远远大于激发光的光谱宽度。
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