光学学报
光學學報
광학학보
ACTA OPTICA SINICA
2009年
11期
3179-3182
,共4页
温圣林%许乔%马平%杨春林%周礼书%颜浩
溫聖林%許喬%馬平%楊春林%週禮書%顏浩
온골림%허교%마평%양춘림%주례서%안호
光学设计与制造%连续相位板%改进G-S算法%光束匀滑%惯性约束聚变
光學設計與製造%連續相位闆%改進G-S算法%光束勻滑%慣性約束聚變
광학설계여제조%련속상위판%개진G-S산법%광속균활%관성약속취변
optical design and fabrication%continuous phase plates%modified G-S algorithm%beam smoothing%inertial confinement fusion
为改善惯性约束聚变(ICF)系统中聚焦光束质量,降低元件的加工难度,建立了基于工艺的连续相位板(CPP)理论设计模型,并从初相选取、相位展开、滤波、焦斑频谱控制等多方面改进了传统的G-S算法,比较分析了传统设计方法和基于工艺设计方法设计的CPP的加工特性和焦斑性能.基于工艺设计的CPP面型光滑,其产生的焦斑顶部均方根(RMS)和能量利用率η分别从传统G-S的62.8%和98.0%改进到16.9%和98.6%,而且有效抑制了10~100 μm的频谱成分.结果表明,基于工艺的CPP设计方法能够较好满足现有工艺约束条件和物理需求.
為改善慣性約束聚變(ICF)繫統中聚焦光束質量,降低元件的加工難度,建立瞭基于工藝的連續相位闆(CPP)理論設計模型,併從初相選取、相位展開、濾波、焦斑頻譜控製等多方麵改進瞭傳統的G-S算法,比較分析瞭傳統設計方法和基于工藝設計方法設計的CPP的加工特性和焦斑性能.基于工藝設計的CPP麵型光滑,其產生的焦斑頂部均方根(RMS)和能量利用率η分彆從傳統G-S的62.8%和98.0%改進到16.9%和98.6%,而且有效抑製瞭10~100 μm的頻譜成分.結果錶明,基于工藝的CPP設計方法能夠較好滿足現有工藝約束條件和物理需求.
위개선관성약속취변(ICF)계통중취초광속질량,강저원건적가공난도,건립료기우공예적련속상위판(CPP)이론설계모형,병종초상선취、상위전개、려파、초반빈보공제등다방면개진료전통적G-S산법,비교분석료전통설계방법화기우공예설계방법설계적CPP적가공특성화초반성능.기우공예설계적CPP면형광활,기산생적초반정부균방근(RMS)화능량이용솔η분별종전통G-S적62.8%화98.0%개진도16.9%화98.6%,이차유효억제료10~100 μm적빈보성분.결과표명,기우공예적CPP설계방법능구교호만족현유공예약속조건화물리수구.
A theoretical design model for continuous phase plates (CPP) used in inertial confinement fusion is built to improve the focus beam quality and reduce the difficulty of CPP's fabrication. Moreover, the traditional G-S algorithm is modified through choosing continuous initial phase, phase unwrapping, phase filtering and controlling the frequency spectrum of focal spot. The operational characteristic and the focal spot's performance caused by the CPP designed by traditional G-S algorithm and modified G-S algorithm are analyzed comparatively. The surface designed by the modified method is smoother than the traditional G-S algorithm, and the root mean square (RMS) and capacity usage ratio of the focal spot caused by modified G-S algorithm are 16.9% and 98.6% respectively, which are all better than the traditional method's 62.8% and 98.0%. The 10~100 μm modulations of focal spot are suppressed very well. It shows that the CPP designed by the modified method meets the process restriction and physical specifications very well.