绝热过程
零(语言学)
群速度
物理
群(周期表)
经典力学
数学物理
机械
量子力学
哲学
语言学
作者
Jacob B. Khurgin,Matteo Clerici,Vincenzo Bruno,Lucia Caspani,Clayton DeVault,Jongbum Kim,Amr M. Shaltout,Alexandra Boltasseva,Vladimir M. Shalaev,Marcello Ferrera,Daniele Faccio,Nathaniel Kinsey
出处
期刊:Optica
[Optica Publishing Group]
日期:2020-01-30
卷期号:7 (3): 226-226
被引量:102
标识
DOI:10.1364/optica.374788
摘要
The conversion of a photon’s frequency has long been a key application area of nonlinear optics. It has been discussed how a slow temporal variation of a material’s refractive index can lead to the adiabatic frequency shift (AFS) of a pulse spectrum. Such a rigid spectral change has relevant technological implications, for example, in ultrafast signal processing. Here, we investigate the AFS process in epsilon-near-zero (ENZ) materials and show that the frequency shift can be achieved in a shorter length if operating in the vicinity of R e { ε r } = 0 . We also predict that, if the refractive index is induced by an intense optical pulse, the frequency shift is more efficient for a pump at the ENZ wavelength. Remarkably, we show that these effects are a consequence of the slow propagation speed of pulses at the ENZ wavelength. Our theoretical predictions are validated by experiments obtained for the AFS of optical pulses incident upon aluminum zinc oxide thin films at ENZ. Our results indicate that transparent metal oxides operating near the ENZ point are good candidates for future frequency conversion schemes.
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