We have studied the probe gain via a double-Λ atomic system with a pair of closely lying lower levels in the presence of two probe and two coherent pump fields. The inversionless gain can be realized by using nondege...We have studied the probe gain via a double-Λ atomic system with a pair of closely lying lower levels in the presence of two probe and two coherent pump fields. The inversionless gain can be realized by using nondegenerate four-wave mixing under the condition of spontaneously generated coherence(SGC) owing to near-degenerate lower levels. Note that by using SGC, two probe fields can be amplified with more remarkable amplitudes, and the gain spectra of an extremely narrow linewidth can be obtained. Last but not least, our results show that the probe gain is quite sensitive to relative phases due to the SGC presence which allows one to modulate the gain spectra periodically by phase modulation, and can also be influenced by all laser field intensities and frequencies, and the angles between dipole elements.展开更多
含有中继线圈的三线圈无线电能传输(wireless power transfer,WPT)系统可以提高系统的传输距离和传输效率。文章基于耦合电感模型分析,并建立传统串联/串联/串联(series/series/series,S/S/S)补偿结构的三线圈磁耦合系统数学模型,但该...含有中继线圈的三线圈无线电能传输(wireless power transfer,WPT)系统可以提高系统的传输距离和传输效率。文章基于耦合电感模型分析,并建立传统串联/串联/串联(series/series/series,S/S/S)补偿结构的三线圈磁耦合系统数学模型,但该数学模型不够直观,不易对磁耦合系统除自感谐振式外的其他补偿参数确定方法进行分析。因此,提出利用变压器T网络模型进行三线圈磁耦合系统建模的新方法。基于所获得的解耦电路模型和等效漏感补偿理论,确定串联/串联/串联-并联(series/series/series-parallel,S/S/SP)、并联/串联/串联(parallel/series/series,P/S/S)、并联/串联/串联-并联(parallel/series/series-parallel, P/S/SP)补偿结构,提出S/S/S、S/S/SP、P/S/S、P/S/SP补偿结构的参数确定方法。所提方法在磁耦合系统不变的情况下,通过补偿电容及等效变比的设计,获得可变增益恒压的输出特性。该方法电路模型简单,设计思路清晰,参数选择灵活,有助于拓宽输出电压增益范围。展开更多
Laser performance is greatly dependent on its operating conditions due to the strong coupling among multi- physics such as gas-dynamics, chemical reaction kinetics and optics in the mixing nozzle of COIL. In this pape...Laser performance is greatly dependent on its operating conditions due to the strong coupling among multi- physics such as gas-dynamics, chemical reaction kinetics and optics in the mixing nozzle of COIL. In this paper, 3D CFD technology is used to simulate the mixing and reactive flow of subsonic cross jet scheme at different conditions. Results obtained show that the jet penetration depth plays a dominant role in the spatial distribution of small signal gains. In the case of over-penetration, unsteady flow structures are induced by impinging between the opposing jets. The optimum spatial distribution of the chemical performance cannot be obtained even if the full penetration condition is achieved through the subsonic transverse jet mixing scheme in the COIL nozzle flow.展开更多
基金Project supported by the Natural Science Foundation of Hainan Province,China(Grant Nos.20151005,20151015,and 20161006)the National Natural Science Foundation of China(Grant Nos.11247005,51262007,11501153,and 41564006)+2 种基金the Postdoctoral Scientific Research Program of Jilin Province,China(Grant No.RB201330)the Project Sponsored by Science Research Foundation for Returned Overseas Chinese Scholarsthe Fundamental Research Funds for the Central Universities,China(Grant No.12QNJJ006)
文摘We have studied the probe gain via a double-Λ atomic system with a pair of closely lying lower levels in the presence of two probe and two coherent pump fields. The inversionless gain can be realized by using nondegenerate four-wave mixing under the condition of spontaneously generated coherence(SGC) owing to near-degenerate lower levels. Note that by using SGC, two probe fields can be amplified with more remarkable amplitudes, and the gain spectra of an extremely narrow linewidth can be obtained. Last but not least, our results show that the probe gain is quite sensitive to relative phases due to the SGC presence which allows one to modulate the gain spectra periodically by phase modulation, and can also be influenced by all laser field intensities and frequencies, and the angles between dipole elements.
文摘含有中继线圈的三线圈无线电能传输(wireless power transfer,WPT)系统可以提高系统的传输距离和传输效率。文章基于耦合电感模型分析,并建立传统串联/串联/串联(series/series/series,S/S/S)补偿结构的三线圈磁耦合系统数学模型,但该数学模型不够直观,不易对磁耦合系统除自感谐振式外的其他补偿参数确定方法进行分析。因此,提出利用变压器T网络模型进行三线圈磁耦合系统建模的新方法。基于所获得的解耦电路模型和等效漏感补偿理论,确定串联/串联/串联-并联(series/series/series-parallel,S/S/SP)、并联/串联/串联(parallel/series/series,P/S/S)、并联/串联/串联-并联(parallel/series/series-parallel, P/S/SP)补偿结构,提出S/S/S、S/S/SP、P/S/S、P/S/SP补偿结构的参数确定方法。所提方法在磁耦合系统不变的情况下,通过补偿电容及等效变比的设计,获得可变增益恒压的输出特性。该方法电路模型简单,设计思路清晰,参数选择灵活,有助于拓宽输出电压增益范围。
基金the Korea Research Foundation Grant No.KRF-2005-005-J09901
文摘Laser performance is greatly dependent on its operating conditions due to the strong coupling among multi- physics such as gas-dynamics, chemical reaction kinetics and optics in the mixing nozzle of COIL. In this paper, 3D CFD technology is used to simulate the mixing and reactive flow of subsonic cross jet scheme at different conditions. Results obtained show that the jet penetration depth plays a dominant role in the spatial distribution of small signal gains. In the case of over-penetration, unsteady flow structures are induced by impinging between the opposing jets. The optimum spatial distribution of the chemical performance cannot be obtained even if the full penetration condition is achieved through the subsonic transverse jet mixing scheme in the COIL nozzle flow.