AI 中文总结
本文研究反射不对称聚合物薄壳虫洞中单侧Kiselev型精质的光学效应,通过壳框架匹配和临界尺度计算,揭示环境参数如何调控跨喉部光线拓扑与图像形态。
AI 中文摘要
穿越虫洞的强场光线可以携带关于观察者无法到达的外部区域的光学信息。我们研究了由包含观察者和发射盘的纯聚合物外部与另一侧具有Kiselev型各向异性环境的聚合物几何结构连接而成的反射不对称薄壳虫洞中的这一机制。相等的质量和共同的聚合物尺度、角几何以及喉部位置隔离了单侧精质的影响。我们推导了壳框架光学匹配,并计算了三种发射方案下的匹配临界尺度、零光线拓扑、轨道数、传递函数和正面强度图。匹配将相对侧的光子势垒投影到观察者屏幕的独特内边缘,而外部宇宙学型视界将穿越喉部的光线分为返回族和终止族。在允许的参数网格上,增加环境振幅会加宽返回屏幕区间,增加聚合物修正会收缩该区间,而改变环境指数则产生竞争性趋势。观察者侧轨道数和普通传递分支在仅限喉部之外的改变下保持不变,提供了精确的对照,而返回分支则移动并加宽。一旦这些分支进入发射支持区域,它们会在源依赖的起始强度下产生额外的内环。结合几何和辐射分析,识别出对单侧精质的受控跨喉部光学响应,并展示了喉部之外的环境信息如何编码在匹配的临界结构和图像形态中。
英文摘要
Strong-field rays that traverse a wormhole can carry optical information about an exterior inaccessible to the observer. We investigate this mechanism in a reflection-asymmetric thin-shell wormhole formed by joining a pure-polymer exterior containing the observer and emitting disk to a polymer geometry with a Kiselev-type anisotropic environment on the opposite side. Equal masses and a common polymer scale, angular geometry, and throat position isolate the effect of one-sided quintessence. We derive the shell-frame optical matching and calculate matched critical scales, null-ray topologies, orbit numbers, transfer functions, and face-on intensity maps for three emission prescriptions. The matching projects the opposite-side photon barrier onto a distinct inner edge of the observer screen, while the outer cosmological-type horizon partitions cross-throat rays into returned and terminal families. Across the admissible parameter grid, increasing the environmental amplitude widens the returned screen interval, increasing the polymer correction contracts it, and changing the environmental exponent produces competing trends. Observer-side orbit numbers and ordinary transfer branches remain invariant under changes confined beyond the throat, providing an exact control, whereas returned branches move and broaden. Once these branches enter the emitting support, they generate additional inner annuli at source-dependent onset strengths. The combined geometric and radiative analysis identifies a controlled cross-throat optical response to one-sided quintessence and shows how environmental information beyond the throat is encoded in matched critical structure and image morphology.
Comments25 pages, 9 figures