• Chinese Optics Letters
  • Vol. 7, Issue 10, 949 (2009)
Zhengle Mao1、2, Lingling Qiao1、2, Fei He1、2, Yang Liao1、2, Chen Wang1, and Ya Cheng1
Author Affiliations
  • 1State Key Laboratory of High Field Laser Physics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2Graduate University of Chinese Academy of Sciences, Beijing 100049, China
  • show less
    DOI: 10.3788/COL20090710.0949 Cite this Article Set citation alerts
    Zhengle Mao, Lingling Qiao, Fei He, Yang Liao, Chen Wang, Ya Cheng. Thermal-induced nonlinear optical characteristics of ethanol solution doped with silver nanoparticles[J]. Chinese Optics Letters, 2009, 7(10): 949 Copy Citation Text show less
    References

    [1] O. Durand, V. Grolier-Mazza, and R. Frey, Opt. Lett. 23, 1471 (1998).

    [2] J. Staromlynska, T. J. McKay, and P. Wilson, J. Appl. Phys. 88, 1726 (2000).

    [3] G. B. Al’tshuler and M. V. Inochkin, Phys. Usp. 36, 604 (1993).

    [4] X. Chen, Y. Chen, Q. Li, J. Zhang, and J. Huang, Acta Opt. Sin. (in Chinese) 16, 952 (1996).

    [5] R. A. Ganeev, A. I. Ryasnyanski , A. L. Stepanov, T. Usmanov, C. Marques, R. C. da Silva, and E. Alves, Opt. Spectrosc. 101, 615 (2006).

    [6] S. Debrus, J. Lafait, M. May, N. Pin con, D. Prot, C. Sella, and J. Venturini, J. Appl. Phys. 88, 4469 (2000).

    [7] X. Qu, J. Liang, C. Yao, Z. Li, J. Mei, and Z. Zhang, Chinese J. Lasers (in Chinese) 34, 1459 (2007).

    [8] X. Qu, J. Wang, C. Yao, and Z. Zhang, Chin. Opt. Lett. 6, 879 (2008).

    [9] J. Yang, J. Zhou, K. Wang, and Q. Zhang, Acta Opt. Sin. (in Chinese) 27, 119 (2007).

    [10] C. Zheng,Y. Du, M. Feng, and H. Zhan, Appl. Phys. Lett. 93, 143108 (2008).

    [11] C. Wang, Y. Fu, Z. Zhou, Y. Cheng, and Z. Xu, Appl. Phys. Lett. 90, 181119 (2007).

    [12] E. L. Falc ao-Filho, C. B. de Ara′ujo, and J. J. Rodrigues, Jr., J. Opt. Soc. Am. B 24, 2948 (2007).

    [13] D. Rativa, R. E. de Araujo, and A. S. L. Gomes, Opt. Express 16, 19244 (2008).

    [14] R. A. Ganeev and A. I. Ryasnyansky, Appl. Phys. B 84, 295 (2006).

    [15] R. A. Ganeev, M. Baba, A. I. Ryasnyanski , M. Suzuki, and H. Kuroda, Opt. Spectrosc. 99, 694 (2005).

    [16] T. Jia, T. He, P. Li, Y. Mo, and Y. Cui, Opt. Laser Technol. 40, 936 (2008).

    [17] P. C. Lee and D. Meisel, J. Phys. Chem. 86, 3391 (1982).

    [18] M. Sheik-Bahae, A. A. Said, T.-H. Wei, D. J. Hagan, E. W. van Stryland, IEEE J. Quantum Electron. 26, 760 (1990).

    [19] R. W. Boyd, Nonlinear Optics (2nd edn.) (Academic Press, London, 2003) p.220.

    [20] R. C. Kamikawachi, I. Abe, A. S. Paterno, H. J. Kalinowski, M. Muller, J. L. Pinto, and J. L. Fabris, Opt. Commun. 281, 621 (2008).

    [21] S. D. Durbin, S. M. Arakelian, and Y. R. Shen, Opt. Lett. 6, 441 (1981).

    [22] K. He and L. Deng, High Power Laser and Particle Beams (in Chinese) 15, 940 (2003).

    Data from CrossRef

    [1] Hoda Aleali, Leila Sarkhosh, Mina Eslamifar, Rouhollah Karimzadeh, Nastaran Mansour. Thermo-Optical Properties of Colloids Enhanced by Gold Nanoparticles. Japanese Journal of Applied Physics, 49, 085002(2010).

    [2] S Pramodini, Y N Sudhakar, M SelvaKumar, P Poornesh. Studies on third-order optical nonlinearity and power limiting of conducting polymers using the z-scan technique for nonlinear optical applications. Laser Physics, 24, 045408(2014).

    [3] Jessica E. Q. Bautista, Manoel L. da Silva-Neto, Cecilia L. A. V. Campos, Melissa Maldonado, Cid B. de Araújo, Anderson S. L. Gomes. Thermal and non-thermal intensity dependent optical nonlinearities in ethanol at 800??nm, 1480??nm, and 1560??nm. Journal of the Optical Society of America B, 38, 1104(2021).

    [4] Husam H. Abu-Safe, Razan Al-Esseili, Sameer Arabasi, Husam El-Nasser, Yahya Zakaria. Thermally-induced nonlinear optical properties of Ti-Al oxide nano-films with double epsilon-near-zero behavior. Optical Materials Express, 11, 412(2021).

    [5] Fatemeh Ershadi, Soghra Mirershadi, Farhad Sattari, Sharareh Mirzaee. Study of structural, optical and magnetic properties of 3D and quasi-2D iron-based lead-free perovskites. Applied Physics A, 127, 736(2021).

    [6] Hussain A. Badran, Hassan A. Sultan, Qusay M. Ali Hassan. Surface morphology and thermal figure of merit of a new compound thin film. Journal of Materials Science: Materials in Electronics, 27, 6735(2016).

    [7] H.A. Sultan, Qusay M.A. Hassan, H. Bakr, Ahmed S. Al-Asadi, D.H. Hashim, C.A. Emshary. Thermal-induced nonlinearities in rose, linseed, and chamomile oils using continuous wave visible laser beam. Canadian Journal of Physics, 96, 157(2018).

    [8] Hussain A. Badran, Qusay M. Ali Hassan, Alaa Y. Al-Ahmad, Chassib A. Emshary. Laser-induced optical nonlinearities in Orange G dye: polyacrylamide gel. Canadian Journal of Physics, 89, 1219(2011).

    [9] Yunlong Liao, Chunmei Song, Yuanjiang Xiang, Xiaoyu Dai. Recent Advances in Spatial Self‐Phase Modulation with 2D Materials and its Applications. Annalen der Physik, 532, 2000322(2020).

    [10] Leila Sarkhosh, Nastaran Mansour. Analysis of Z-scan measurement for large thermal nonlinear refraction in gold nanoparticle colloid. Journal of Nonlinear Optical Physics & Materials, 24, 1550014(2015).

    [11] R Karimzadeh. Spatial self-phase modulation of a laser beam propagating through liquids with self-induced natural convection flow. Journal of Optics, 14, 095701(2012).

    [12] Mahshad Ghanipour, Davoud Dorranian. Nonlinear optical characterization of the Ag nanoparticles doped in polyvinyl alcohol films. Optics and Spectroscopy, 118, 949(2015).

    [13] E Fujiwara, R T Takeishi, A Hase, E Ono, J S Santos, C K Suzuki. Real-time optical fibre sensor for hydro-alcoholic solutions. Measurement Science and Technology, 21, 094035(2010).

    [14] Yu. E. Geints, V. A. Donchenko, Al. A. Zemlyanov, N. S. Panamarev. Far-field temporal dynamics of a laser beam passed through a thin nanocolloidal layer. Atmospheric and Oceanic Optics, 24, 338(2011).

    [15] Vladimir Liberman, Paul D. Robinson, Geoffrey P. Geurtsen, Shane M. Tysk, Michael W. Geis. Highly efficient all-optical beam modulation utilizing thermo-optic effects. Optics Express, 26, 9502(2018).

    [16] Hoda Aleali, Nastaran Mansour. Thermal-induced nonlinearity enhancement in Ag nanoparticles colloids by low thermal conductivity liquids. Journal of Optics, 48, 172(2019).

    [17] Albert S. Reyna, Cid B. de Araújo. High-order optical nonlinearities in plasmonic nanocomposites—a review. Advances in Optics and Photonics, 9, 720(2017).

    [18] Yuri E Geints, Nicolay S Panamarev, Aleksey A Zemlyanov. Transient behavior of far-field diffraction patterns of a Gaussian laser beam due to the thermo-optical effect in metal nanocolloids. Journal of Optics, 13, 055707(2011).

    [19] Yin Liu, Qi Xia, Ai Zhou, Xianbin Wang, Libo Yuan. Multi-parameter sensing based on surface plasma resonance with tungsten disulfide sheets coated. Optics Express, 28, 6084(2020).

    [20] L Sarkhosh, N Mansour. Study of the solution thermal conductivity effect on nonlinear refraction of colloidal gold nanoparticles. Laser Physics, 25, 065404(2015).

    [21] S. Pramodini, P. Poornesh, K.K. Nagaraja. Thermally induced nonlinear optical response and optical power limiting of acid blue 40 dye. Current Applied Physics, 13, 1175(2013).

    [22] S. Pramodini, Deepika, Sandhya, Ashok Rao, P. Poornesh. Studies on thermally induced third-order optical nonlinearity and optical power limiting response of Azure B under CW He–Ne laser excitation. Optics & Laser Technology, 62, 58(2014).

    [23] A. Ghanem, M. D. Zidan, M. S. EL-Daher, A. Allahham. Numerical simulation for symmetric diffraction patterns of 8-hydroxyquinolin-1-ium 4-aminobenzenesulfonate. Optoelectronics Letters, 18, 283(2022).

    [24] K K Nagaraja, S Pramodini, A Santhosh Kumar, H S Nagaraja, P Poornesh. Structural, linear, and nonlinear optical properties of radio frequency-sputtered nitrogen-doped ZnO thin films studied using z-scan technique. Laser Physics, 24, 085402(2014).

    [25] Pengfei Qi, Qiang Su, Dan Lu, Lie Lin, Nan Zhang, Weiwei Liu. Optical nonlinearities of alcoholic liquids under high-repetition-rate femtosecond lasers by single beam time-resolved eclipsed Z-scan. Optics & Laser Technology, 109, 643(2019).

    [26] K.R. Vijesh, Titu Thomas, Manu Vaishakh, V.P.N. Nampoori, Sheenu Thomas. Fluorescence tuning, all-optical switching and OR gate realization of phloroglucinol derived carbon dots. Optik, 248, 168049(2021).

    [27] Leila Sarkhosh, Hoda Aleali, Rouhollah Karimzadeh, Nastaran Mansour. Large thermally induced nonlinear refraction of gold nanoparticles stabilized by cyclohexanone. physica status solidi (a), 207, 2303(2010).

    [28] H.H. Abu-Safe, R. Al-Esseili, M. Sarollahi, M. Refaei, H. Naseem, M. Zamani-Alavijeh, T. AlAbdulaal, M.E. Ware. Thermally-induced nonlinear optical properties of silver nano-films near surface plasmon resonance. Optical Materials, 105, 109858(2020).

    [29] Rouhollah Karimzadeh. Studies of spatial self-phase modulation of the laser beam passing through the liquids. Optics Communications, 286, 329(2013).

    [30] Samar Mamdouh, Alaa Mahmoud, Ahmed Samir, Mohamed Mobarak, Tarek Mohamed. Using femtosecond laser pulses to investigate the nonlinear optical properties of silver nanoparticles colloids in distilled water synthesized by laser ablation. Physica B: Condensed Matter, 631, 413727(2022).

    Zhengle Mao, Lingling Qiao, Fei He, Yang Liao, Chen Wang, Ya Cheng. Thermal-induced nonlinear optical characteristics of ethanol solution doped with silver nanoparticles[J]. Chinese Optics Letters, 2009, 7(10): 949
    Download Citation