2017
DOI: 10.1088/1555-6611/aa6f74
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Investigations on nonlinear optical properties of electron beam treated Gd:ZnO thin films for photonic device applications

Abstract: In this article, we report the third-order nonlinear optical properties of electron beam irradiated gadolinium-doped zinc oxide (GZO) thin films prepared using the spray pyrolysis deposition technique. GZO thin films were treated with an electron beam from a variable energy microtron accelerator at dose rates ranging from 1-5 kGy. Nonlinear optical measurements were conducted by employing the single beam Z-scan technique. A continuous wave He-Ne laser operating at 633 nm was used as the source of excitation. C… Show more

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Cited by 24 publications
(4 citation statements)
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“…TPA mechanism responsible for NLA was confirmed by satisfying the condition of the energy band i.e. E g  £2hν ³2E g [19].…”
Section: Nonlinear Optical Studiesmentioning
confidence: 88%
“…TPA mechanism responsible for NLA was confirmed by satisfying the condition of the energy band i.e. E g  £2hν ³2E g [19].…”
Section: Nonlinear Optical Studiesmentioning
confidence: 88%
“…Apart from doping, several studied have been reported that the synthesis method under specific conditions affecting the properties of the films and could enhanced their properties [7]. To date, variant synthesis method has been used to grow the ZnO films namely, sputtering [8], co-precipitation [9], spin coating [10], hydrothermal [11], MBE [12], spray pyrolysis [13], and chemical bath deposition (CBD) [14]. Among those synthesis methods, sputtering method is more attractive due to its value of low processing temperature, flexibility in control the dopant concentration, and able to develop good quality of film in a large area of substrate which is good for mass-produce especially for industrial applications.…”
Section: Introductionmentioning
confidence: 99%
“…The particular impurity energy levels form the localized energy levels within the energy gap permitting additional manipulation by their features Rusing external fields. For instance, an enhancement of the THG upon an increase in irradiation by electron dose rates was observed [17]. Additionally, these materials may be applied also as photocatalyst and sensors due to their promising photocatalytic, piezoelectric, optical features [9,[18][19][20].…”
Section: Introductionmentioning
confidence: 99%