992 resultados para Distributed-feedback (DFB) laser


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We present theory and simulations for a spectral narrowing scheme for laser diode arrays (LDAs) that employs optical feedback from a diffraction grating. We calculate the effect of the so-called smile of the LDA and show that it is possible to reduce the effect by using a cylindrical lens set at an angle to the beam. The scheme is implemented on a 19-element LDA with smile of 7.6 mu m and yields frequency narrowing from a free-running width of 2 to 0.15 nm. The experimental results are in good agreement with the theory. (c) 2005 Optical Society of America.

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Conventional detection scheme for self-mixing sensors uses an integrated photodiode within the laser package to monitor the self mixing signal. This arrangement can be simplified by directly obtaining the self-mixing signals across the laser diode itself and omitting the photodiode. This work reports on a Vertical-Cavity Surface-Emitting Laser (VCSEL) based selfmixing sensor using the laser junction voltage to obtain the selfmixing signal. We show that the same information can be obtained with only minor changes to the extraction circuitry leading to potential cost saving with reductions in component costs and complexity and significant increase in bandwidth favoring high speed modulation. Experiments using both photo current and voltage detection were carried out and the results obtained show good agreement with the theory.

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O presente estudo avaliou a velocidade da movimentação ortodôntica e as alterações dentárias e esqueléticas na distalização de molares superiores sob influência do laser de baixa intensidade por meio de telerradiografias laterais. A amostra foi constituída por 18 pacientes, portadores de maloclusão Classe II, com idade média inicial de 14,4 anos e divididos em dois grupos: Grupo I - laser e Grupo II - controle. Os pacientes foram tratados com um dispositivo ortodôntico denominado Pêndulo de Hilgers modificado, concomitantemente foi realizado a aplicação do laser de baixa intensidade na região radicular dos primeiros e segundos molares superiores, dos lados direito e esquerdo, nos pacientes do grupo I, sob o seguinte protocolo: 780nm de comprimento de onda, 40mW de potência, 10J/cm² de densidade de energia, 0,4J de energia por ponto durante 10 segundos cada e resultando em energia total de 20,8J. Foram distribuídos 52 pontos por vestibular e palatina dos primeiros e segundos molares superiores. A aplicação do laser foi realizada no dia da ativação da mola de TMA e repetida a cada mês até a sobrecorreção da relação molar. As telerradiografias laterais foram realizadas no início do tratamento (T1), ao final do terceiro mês (T2) e ao final da distalização (T3) com a relação molar sobrecorrigida em aproximadamente 1mm. Após análise cefalométrica foram realizadas comparações das alterações obtidas entre as fases Inicial (T1) e Final (T3) e Inicial (T1) e terceiro mês (T2) e comparadas entre os grupos. Os resultados mostraram inclinação para distal dos primeiros e segundos molares superiores, inclinação vestibular dos incisivos centrais superiores acentuada pela presença dos segundos molares e ausência de alterações dentárias verticais significativas, rotação do plano mandibular no sentido horário e o consequente aumento da altura facial anterior inferior. Concluiu-se que os efeitos do Pêndulo de Hilgers modificado sob a metodologia realizada provocaram alterações predominantemente dentoalveolares e que a movimentação dos primeiros e segundos molares superiores sob efeito da laserterapia, não apresentou diferença estatisticamente significante na velocidade de movimentação ortodôntica e em nenhuma das variáveis estudadas.

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Self-seeded, gain-switched operation of an InGaN multi-quantum-well diode laser is reported for the first time. Narrow-line, wavelength-tunable, picosecond pulses have been generated from a standard, uncoated diode laser with an external feedback.

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We present a study on the potential use of ultra-longlasercavities for unrepeateredfiber communication, based on the theory of nonlinearity management. A comparison is offered between the performance of ultra-longlasers and standard bi-directional distributed amplification schemes in nonrepeated transmission. Links based on both traditional (SMF/DCF) and modern Ultrawave transmissionfibers are considered.

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We report on a novel experimental setup for distributed measurement of temperature, based on spontaneous Brillouin scattering in optical fiber. We have developed a mode-locked Brillouin fiber ring laser in order to generate the dual frequency source required for a heterodyne detection of the backscattered signal. This relatively simple system enables temperature measurements over 20 km with a spatial resolution of 7 m.

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A novel distributed strain sensor is presented utilizing the strain dependence of the frequency at which the Brillouin loss is maximized in the interaction between a cw laser and a pulsed laser. A strain resolution of 20 µ with a spatial resolution of 5 m has been achieved with a 22 km sensing length.

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We present a novel distributed sensor that utilizes the temperature and strain dependence of the frequency at which the Brillouin loss is maximized in the interaction between a cw laser and a pulsed laser. With a 22-km sensing length, a strain resolution of 20 µ? and a temperature resolution of 2°C have been achieved with a spatial resolution of 5 m.

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We present a novel distributed temperature sensor that uses the temperature dependence of the frequency at which the loss is maximized in the interaction between a cw laser and a pulsed laser. With a 32-km sensing length, a temperature resolution of 1°C has been achieved; it is also shown that a spatial resolution of 5 m may be obtained.

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We present a novel distributed temperature sensor that uses the temperature dependence of the frequency at which the loss is maximized in the interaction between a cw laser and a pulsed laser. With a 32-km sensing length, a temperature resolution of 1°C has been achieved; it is also shown that a spatial resolution of 5 m may be obtained.

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Self-seeded, gain-switched operation of an InGaN multi-quantum-well laser diode has been demonstrated for the first time. An external cavity comprising Littrow geometry was implemented for spectral control of pulsed operation. The feedback was optimized by adjusting the external cavity length and the driving frequency of the laser. The generated pulses had a peak power in excess of 400mW, a pulse duration of 60ps, a spectral linewidth of 0.14nm and maximum side band suppression ratio of 20dB. It was tunable within the range of 3.6nm centered at a wavelength of 403nm.

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An optical fiber is treated as a natural one-dimensional random system where lasing is possible due to a combination of Rayleigh scattering by refractive index inhomogeneities and distributed amplification through the Raman effect. We present such a random fiber laser that is tunable over a broad wavelength range with uniquely flat output power and high efficiency, which outperforms traditional lasers of the same category. Outstanding characteristics defined by deep underlying physics and the simplicity of the scheme make the demonstrated laser a very attractive light source both for fundamental science and practical applications.

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The application of orthogonal frequency-division multiplexing (OFDM) in an optical burst-switched system employing a single fast switching sample grating-distributed Bragg reflector (SG-DBR) laser is demonstrated experimentally. The effect of filter profiles compatible with 50, 25, and 12.5 GHz wavelength-division multiplexing grids on the system is investigated with system performance examined in terms of error vector magnitude per subcarrier for OFDM burst data beginning at various times after a switching event. Additionally the placement of the OFDM training sequence within the data burst and its effect on the system is investigated.

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A novel distributed strain sensor is presented utilizing the strain dependence of the frequency at which the Brillouin loss is maximized in the interaction between a cw laser and a pulsed laser. A strain resolution of 20 µ with a spatial resolution of 5 m has been achieved with a 22 km sensing length.

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We report on a novel experimental setup for distributed measurement of temperature, based on spontaneous Brillouin scattering in optical fiber. We have developed a mode-locked Brillouin fiber ring laser in order to generate the dual frequency source required for a heterodyne detection of the backscattered signal. This relatively simple system enables temperature measurements over 20 km with a spatial resolution of 7 m.