Optical enhancement cavity(OEC)is a powerful tool for fundamental research and diagnostics.In this paper,the progress of a continuous-wave OEC to realize of megawatt cavity for a novel light source based on a steady-s...Optical enhancement cavity(OEC)is a powerful tool for fundamental research and diagnostics.In this paper,the progress of a continuous-wave OEC to realize of megawatt cavity for a novel light source based on a steady-state microbunching(SSMB)mechanism,is reported.After efficiently suppressing all external noise and optimizing the alignment,mode-matching,and polarization matching,stable and long-term locking is achieved with the help of two feedback loops.The modal instability phenomenon caused by the surface thermoelastic deformation is observed.A pair of D-shape mirrors are utilized to remove the high-order modes.Finally,an intra-cavity average power of 30 kW is reached.展开更多
以PEG4000和(NH_4)2SO_4为双水相体系、二异丙胺为沉淀剂,对共沉淀法进行改进,合成了四氧化三铁(Fe_3O_4)纳米粒子。采用XRD、TEM、VSM、FT-IR等对Fe_3O_4进行性能表征,证明所合成的Fe_3O_4粒子为具有反尖晶石结构、稳定性和分散性良好...以PEG4000和(NH_4)2SO_4为双水相体系、二异丙胺为沉淀剂,对共沉淀法进行改进,合成了四氧化三铁(Fe_3O_4)纳米粒子。采用XRD、TEM、VSM、FT-IR等对Fe_3O_4进行性能表征,证明所合成的Fe_3O_4粒子为具有反尖晶石结构、稳定性和分散性良好、尺寸均一、粒径大小为11 nm左右的球形纳米粒子,具备优异的超顺磁性和高磁化强度等特性。同时对反应温度及铁离子浓度比、PEG4000/(NH_4)2SO_4的质量浓度对双水相体系的形成进行条件探索,确定了最优工艺方案为n(Fe2+)∶n(Fe3+)=2∶3、1.0 g Fe Cl2·4H2O、1.2 g Fe Cl3、10 m L二异丙胺,PEG4000/(NH_4)2SO_4双水相体系中PEG4000的质量分数为18%、(NH_4)2SO_4的质量分数为25%,反应温度为60℃,反应时间为1 h。展开更多
基金the Fund from Tsinghua University Initiative Scientific Research Program,China(Grant No.20191081195).
文摘Optical enhancement cavity(OEC)is a powerful tool for fundamental research and diagnostics.In this paper,the progress of a continuous-wave OEC to realize of megawatt cavity for a novel light source based on a steady-state microbunching(SSMB)mechanism,is reported.After efficiently suppressing all external noise and optimizing the alignment,mode-matching,and polarization matching,stable and long-term locking is achieved with the help of two feedback loops.The modal instability phenomenon caused by the surface thermoelastic deformation is observed.A pair of D-shape mirrors are utilized to remove the high-order modes.Finally,an intra-cavity average power of 30 kW is reached.
基金国家自然科学基金面上项目(No.41474113)武汉工程大学人才专项经费资助项目+3 种基金湖北省建设科技计划项目(2016)supported by the National Natural Science Foundation of China(41474113)the Talent Project of Wuhan Institute of Technologythe Plan Project of Construction Science and Technology of Hubei Province(2016)
文摘以PEG4000和(NH_4)2SO_4为双水相体系、二异丙胺为沉淀剂,对共沉淀法进行改进,合成了四氧化三铁(Fe_3O_4)纳米粒子。采用XRD、TEM、VSM、FT-IR等对Fe_3O_4进行性能表征,证明所合成的Fe_3O_4粒子为具有反尖晶石结构、稳定性和分散性良好、尺寸均一、粒径大小为11 nm左右的球形纳米粒子,具备优异的超顺磁性和高磁化强度等特性。同时对反应温度及铁离子浓度比、PEG4000/(NH_4)2SO_4的质量浓度对双水相体系的形成进行条件探索,确定了最优工艺方案为n(Fe2+)∶n(Fe3+)=2∶3、1.0 g Fe Cl2·4H2O、1.2 g Fe Cl3、10 m L二异丙胺,PEG4000/(NH_4)2SO_4双水相体系中PEG4000的质量分数为18%、(NH_4)2SO_4的质量分数为25%,反应温度为60℃,反应时间为1 h。