| Makale Türü |
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| Dergi Adı | Optical Materials (Q2) | ||
| Dergi ISSN | 0925-3467 Dergi Bilgileri (2014) | ||
| Dergi Tarandığı Indeksler | SCI-Expanded | ||
| Makale Dili | İngilizce | Basım Tarihi | 02-2014 |
| Kabul Tarihi | – | Yayınlanma Tarihi | 01-11-2013 |
| Cilt / Sayı / Sayfa | 36 / 1 / 106–111 | DOI | 10.1016/j.optmat.2013.04.037 |
| Makale Linki | http://www.sciencedirect.com/science/journal/09253467 | ||
| UAK Araştırma Alanları |
Atom, Molekül ve Lazer Fiziği
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| Özet |
| Degenerate four-wave mixing (DFWM) experiments have been performed to determine the third-order nonlinear optical (NLO) susceptibilities (χ (3)) of gold (III) maleimide dithiolate tetraphenylphosphonium,(PPh 4)[Au (midt) 2],(Au-P) and gold (III) maleimide dithiolate melamine melaminium hybrid solvate,(C 3 N 6 H 6)(C 3 N 6 H 7+)[Au (midt) 2]−· 2DMF· 2H 2 O,(Au-Mel). Ab-initio quantum mechanical calculations (time-dependent Hartree–Fock (TDHF) method) of Au-P and Au-Mel have been carried out to compute the electric dipole moment (μ), the dispersion-free and frequency-dependent dipole polarizability (α) and the second hyperpolarizability (γ) values. These theoretical calculations are in good agreement with the experimentally obtained results by the DFWM technique. All the investigations show clearly the effect played by the counter ion on the resulting NLO properties of the two gold complexes. |
| Anahtar Kelimeler |
| Degenerate four wave mixing | Dithiolene complexes | Nonlinear optical response | Time-dependent Hartree-Fock |
| Atıf Sayıları | |
| Web of Science | 17 |
| Scopus | 16 |
| Google Scholar | 20 |
| Dergi Adı | OPTICAL MATERIALS |
| Kısa Adı | OPT MATER |
| Yayıncı | ELSEVIER SCIENCE BV |
| Açık Erişim | Hayır |
| ISSN | 0925-3467 |
| E-ISSN | 1873-1252 |
| Wos Quartile | Q2 |
| Scopus Quartile | Q1 |
| Tarandığı Indeksler | SCIE , Scopus |
| WoS Kategoriler | MATERIALS SCIENCE, MULTIDISCIPLINARY | OPTICS |
| Scopus Kategoriler | COMPUTER SCIENCE (MISCELLANEOUS) | ELECTRICAL AND ELECTRONIC ENGINEERING | ATOMIC AND MOLECULAR PHYSICS, AND OPTICS | ELECTRONIC, OPTICAL AND MAGNETIC MATERIALS |