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| Title: | Tuning of near-infrared-to-near-infrared luminescence from one-photon to two-photon anti-stokes shift in Ca₃Ga₂-xCrxGe₃O₁₂ via varying Cr³⁺ content | Authors: | Lin, H Yu, T Bai, G Zhang, Q Hao, J |
Issue Date: | 15-Feb-2017 | Source: | Optics letters, 15 Feb. 2017, v. 42, no. 4, p. 715-718 | Abstract: | Near-infrared-to-near-infrared (NIR-to-NIR) anti-Stokes luminescence from Cr³⁺ singly doped Ca₃Ga₂-xCrxGe₃O₁ (CGGG) occurs under the excitation of an 808 nm diode laser. The anti-Stokes processes vary from one photon to two photon, depending on the Cr³⁺ content (x) in Ca₃Ga₂-xCrxGe₃O₁. The results suggest that phonon-assisted anti-Stokes excitation and cooperative energy transfer are involved in the observed upconversion (UC) processes of CGGG:Cr³⁺ . The relevant Cr³⁺ -doping-concentration-dependent NIR-to-NIR anti-Stokes luminescent mechanism, either one-photon or two-photon UC, is investigated. Such an observation on modulating the UC process via varying the doping concentration is helpful in broadening the understanding of UC phenomena. | Publisher: | Optical Society of America | Journal: | Optics letters | ISSN: | 0146-9592 | EISSN: | 1539-4794 | DOI: | 10.1364/OL.42.000715 | Rights: | © 2017 Optical Society of America © 2017 Optica Publishing Group. One print or electronic copy may be made for personal use only. Systematic reproduction and distribution, duplication of any material in this paper for a fee or for commercial purposes, or modifications of the content of this paper are prohibited. The following publication Lin, H., Yu, T., Bai, G., Zhang, Q., & Hao, J. (2017). Tuning of near-infrared-to-near-infrared luminescence from one-photon to two-photon anti-Stokes shift in Ca 3 Ga 2-x Cr x Ge 3 O 12 via varying Cr 3+ content. Optics Letters, 42(4), 715-718 is available at https://doi.org/10.1364/OL.42.000715. |
| Appears in Collections: | Journal/Magazine Article |
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| File | Description | Size | Format | |
|---|---|---|---|---|
| Bai_Tuning_Luminescence_One-photon.pdf | Pre-Published version | 1.73 MB | Adobe PDF | View/Open |
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