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  • Optica Publishing Group  (2)
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  • Optica Publishing Group  (2)
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  • 1
    Online Resource
    Online Resource
    Optica Publishing Group ; 2022
    In:  Optical Materials Express Vol. 12, No. 2 ( 2022-02-01), p. 727-
    In: Optical Materials Express, Optica Publishing Group, Vol. 12, No. 2 ( 2022-02-01), p. 727-
    Abstract: Owing to their ultra-high temperature sensitivity, luminescence thermometers based on the intervalence charge transfer state of Pr 3+ have drawn more and more attention. But the inner mechanism of Pr 3+ luminescence thermometers, especially which parameters could affect the value of relative sensitivity, is still not fully revealed. In this paper, the luminescence thermometer properties of Ba 1-x Ca x TiO 3 :1%Pr 3+ (x=0-0.7) with variation temperature have been systematically studied. The process of electrons in the 3 P 0 state passed through the intervalence charge-transfer state to the 1 D 2 state has been found to be sensitive to temperature variation. Through the intervalence charge transfer state engineering, we successfully realized the effective regulation of the intervalence charge transfer state energy position by replacing Ba 2+ with Ca 2+ and find that the effective energy gap between the 3 P 0 state and the intervalence charge transfer state is the key parameter that affects the relative sensitivity of luminescence thermometers. Moreover, the maximum relative sensitivity of Pr 3+ -doped BaTiO 3 , evaluated to be 2.26% K −1 at 413K under 450 nm excitation, is the one of the best performances among the Pr 3+ -based luminescence thermometers. This research could lead to the novel development of an efficient and high-performance optical thermometer.
    Type of Medium: Online Resource
    ISSN: 2159-3930
    Language: English
    Publisher: Optica Publishing Group
    Publication Date: 2022
    detail.hit.zdb_id: 2619914-2
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  • 2
    In: Optics Letters, Optica Publishing Group, Vol. 46, No. 13 ( 2021-07-01), p. 3191-
    Abstract: Resonant fiber optic gyros (RFOGs) generally use fiber ring resonator propagating linearly polarized light, so it is inevitably affected by coherent optical noises between two counterpropagation beams such as nonlinear effect and backscattering noise. So, we propose the incoherent suppression method of optical noises in a RFOG based on the circularly state of polarization (CSOP) light. The spun-fiber is used to fabricate a resonator that can realize the reciprocal transmission of CSOP light for the first time, and the highly reciprocal signal processing scheme is applied in RFOG based on the Faraday effect. We demonstrate that the designed resonator realizes orthogonal separation of backscattered light thereby suppressing the backscattering noise, and we confirm that the reciprocal CSOP light can greatly reduce the nonlinear effect due to incoherence. With the closed-loop method based on the Faraday effect and spun-fiber resonator, whose finesse is 6.6 with a length of 11-meter spun-fiber and 6-meter single-polarization fiber, the long-term stability and short-term stability of a RFOG have been greatly improved. The incoherence method based on a reciprocal CSOP light propagation mechanism has great potential in the suppression of coherence optical noises in a RFOG, which provides a new, to the best of our knowledge, idea to solve the problem.
    Type of Medium: Online Resource
    ISSN: 0146-9592 , 1539-4794
    Language: English
    Publisher: Optica Publishing Group
    Publication Date: 2021
    detail.hit.zdb_id: 243290-0
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