中国光学
中國光學
중국광학
CHINESE JOURNAL OF OPTICS
2014年
1期
105-111
,共7页
宋源%卢启鹏%彭忠琦%龚学鹏
宋源%盧啟鵬%彭忠琦%龔學鵬
송원%로계붕%팽충기%공학붕
变包含角平面光栅单色器%热负载%聚焦常数%分辨率%斜率误差
變包含角平麵光柵單色器%熱負載%聚焦常數%分辨率%斜率誤差
변포함각평면광책단색기%열부재%취초상수%분변솔%사솔오차
variable included angle plane grating monochromator%thermal load%focusing constant (Cf )%reso-lution%slope error
针对变包含角平面光栅单色器前置平面镜( PM)受热负载而导致的单色器分辨率降低问题,提出优化聚焦常数( Cf )补偿分辨率的方法。首先,计算不同Cf值时PM的热功率吸收谱,在此基础上对镜面热负载进行热-结构耦合分析,得到不同热负载时PM表面热变形的变化量;然后,结合理想分辨率公式和光线追迹软件求出加热负载的单色器分辨率;最后,优化Cf实现分辨率的补偿。研究结果表明,以软X射线谱学显微光束线站为例,当出射光能量为1000 eV时,将Cf由1.8优化至1.84,单色器分辨率即可与无热负载时的相同,该优化方法可有效补偿单色器分辨率的降低。
針對變包含角平麵光柵單色器前置平麵鏡( PM)受熱負載而導緻的單色器分辨率降低問題,提齣優化聚焦常數( Cf )補償分辨率的方法。首先,計算不同Cf值時PM的熱功率吸收譜,在此基礎上對鏡麵熱負載進行熱-結構耦閤分析,得到不同熱負載時PM錶麵熱變形的變化量;然後,結閤理想分辨率公式和光線追跡軟件求齣加熱負載的單色器分辨率;最後,優化Cf實現分辨率的補償。研究結果錶明,以軟X射線譜學顯微光束線站為例,噹齣射光能量為1000 eV時,將Cf由1.8優化至1.84,單色器分辨率即可與無熱負載時的相同,該優化方法可有效補償單色器分辨率的降低。
침대변포함각평면광책단색기전치평면경( PM)수열부재이도치적단색기분변솔강저문제,제출우화취초상수( Cf )보상분변솔적방법。수선,계산불동Cf치시PM적열공솔흡수보,재차기출상대경면열부재진행열-결구우합분석,득도불동열부재시PM표면열변형적변화량;연후,결합이상분변솔공식화광선추적연건구출가열부재적단색기분변솔;최후,우화Cf실현분변솔적보상。연구결과표명,이연X사선보학현미광속선참위례,당출사광능량위1000 eV시,장Cf유1.8우화지1.84,단색기분변솔즉가여무열부재시적상동,해우화방법가유효보상단색기분변솔적강저。
In synchrotron radiation beamlines , the increasing light flux will lead to more thermal load on opti-cal elements .The thermal load on the Plane Mirror ( PM) of variable included angle plane-grating monochrom-ator will decrease the resolution .This paper proposes a method to recover the resolution by optimizing the val-ue of focusing constant(Cf ).Firstly, the absorption spectra of thermal power with different values of Cf are obtained by calculation .Then thermo-mechanical analysis of PM is conducted to get variable deformations on PM with different thermal power .Secondly , the resolution is calculated by combining the function of ideal res-olution and the software of ray tracing .Finally, the resolution is compensated by optimizing Cf .The result in-dicates that taking the soft X-ray spectroscopy micro beam line station of SSRF for example , the resolution can be improved by changing the value of Cf from 1.8 to 1.84 when the photon energy is 1 000 eV.So optimizing the value of Cf is an effective way to recover the decreased resolution induced by thermal power on PM .