Optically induced metal-to-dielectric transition in Epsilon-Near-Zero metamaterials

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作者
R. M. Kaipurath
M. Pietrzyk
L. Caspani
T. Roger
M. Clerici
C. Rizza
A. Ciattoni
A. Di Falco
D. Faccio
机构
[1] School of Engineering and Physical Sciences,Dipartimento di Scienza e Alta Tecnologia
[2] SUPA,undefined
[3] Institute of Photonics and Quantum Sciences Heriot-Watt University,undefined
[4] SUPA,undefined
[5] School of Physics and Astronomy,undefined
[6] University of St. Andrews,undefined
[7] School of Engineering,undefined
[8] University of Glasgow,undefined
[9] Università dell’Insubria,undefined
[10] Consiglio Nazionale delle Ricerche,undefined
[11] CNR-SPIN,undefined
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摘要
Epsilon-Near-Zero materials exhibit a transition in the real part of the dielectric permittivity from positive to negative value as a function of wavelength. Here we study metal-dielectric layered metamaterials in the homogenised regime (each layer has strongly subwavelength thickness) with zero real part of the permittivity in the near-infrared region. By optically pumping the metamaterial we experimentally show that close to the Epsilon-Near-Zero (ENZ) wavelength the permittivity exhibits a marked transition from metallic (negative permittivity) to dielectric (positive permittivity) as a function of the optical power. Remarkably, this transition is linear as a function of pump power and occurs on time scales of the order of the 100 fs pump pulse that need not be tuned to a specific wavelength. The linearity of the permittivity increase allows us to express the response of the metamaterial in terms of a standard third order optical nonlinearity: this shows a clear inversion of the roles of the real and imaginary parts in crossing the ENZ wavelength, further supporting an optically induced change in the physical behaviour of the metamaterial.
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