• Laser and Particle Beams
  • Vol. 2022, Issue 2, 3382780 (2022)
Vijayakumar Sadasivan Nair1, Sharafudeen Kaniyarakkal2, Shiju Edappadikkunnummal3, Joicy John2, Sudheesh Palengara4, Siji Narendran5, and Suresh Thelakkadan Puthiyaveettil6
Author Affiliations
  • 1PG and Research Department of Physics N S S College Pandalam Pathanamthitta 689501 Kerala India
  • 2Department of Physics Kuwait College of Science and Technology Doha 35004 Al-Asimah Kuwait
  • 3International School of Photonics Cochin University of Science and Technology Kochi 682022 Kerala India
  • 4Department of Physics N S S College Manjeri Malappuram 676122 Kerala India
  • 5Department of Physics T K M M College Nangiarkulangara Alappuzha 690513 Kerala India
  • 6Department of Physics Government Brennen College Thalassery Kannur 670106 Kerala India
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    DOI: 10.1155/2022/3382780 Cite this Article
    Vijayakumar Sadasivan Nair, Sharafudeen Kaniyarakkal, Shiju Edappadikkunnummal, Joicy John, Sudheesh Palengara, Siji Narendran, Suresh Thelakkadan Puthiyaveettil. Reverse Saturable Absorption in Substituted Hydrazones and Its Structure-Property Relationship for Photonic Applications[J]. Laser and Particle Beams, 2022, 2022(2): 3382780 Copy Citation Text show less

    Abstract

    The third-order nonlinear optical properties of three hydrazone derivatives, namely, ethyl 2-((2E)-2-(4-(dimethylamino)benzylidene]hydrazinyl)-5-nitrobenzoate, ethyl 2-((2E)-2-(4-chlorobenzylidene)hydrazino)-5-nitrobenzoate, and methyl 5-nitro-2-((2E)-2-(4-nitrobenzylidene)hydrazino)benzoate were investigated by the single beam Z-scan technique with nanosecond laser pulses at 532 nm. The compounds were doped into PMMA (poly (methyl methacrylate)), and their third-order nonlinearity was studied with a prospective of reaching a compromise between processability and high nonlinear optical behavior. The optical limiting study of the samples was carried out at 532 nm. The measured values of the third-order nonlinear susceptibility, χ(3), and the nonlinear refractive index, n2, are of the order of 10-13 esu and 10-11 esu, respectively. The nonlinear absorption in materials was attributed to reverse saturable absorption. The results are quite promising for possible applications in photonic devices.
    Vijayakumar Sadasivan Nair, Sharafudeen Kaniyarakkal, Shiju Edappadikkunnummal, Joicy John, Sudheesh Palengara, Siji Narendran, Suresh Thelakkadan Puthiyaveettil. Reverse Saturable Absorption in Substituted Hydrazones and Its Structure-Property Relationship for Photonic Applications[J]. Laser and Particle Beams, 2022, 2022(2): 3382780
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