登陆注册
14827000000027

第27章

Many substances possess the power of turning the plane of polarization without the intervention of magnetism. Oil of turpentine and quartz are examples; but Faraday showed that, while in one direction, that is, across the lines of magnetic force, his rotation is zero, augmenting gradually from this until it attains its maximum, when the direction of the ray is parallel to the lines of force; in the oil of turpentine the rotation is independent of the direction of the ray. But he showed that a still more profound distinction exists between the magnetic rotation and the natural one. I will try to explain how. Suppose a tube with glass ends containing oil of turpentine to be placed north and south. Fixing the eye at the south end of the tube, let a polarized beam be sent through it from the north. To the observer in this position the rotation of the plane of polarization, by the turpentine, is right-handed. Let the eye be placed at the north end of the tube, and a beam be sent through it from the south; the rotation is still right-handed.

Not so, however, when a bar of heavy glass is subjected to the action of an electric current. In this case if, in the first position of the eye, the rotation be right-handed, in the second position it is left-handed. These considerations make it manifest that if a polarized beam, after having passed through the oil of turpentine in its natural state, could by any means be reflected back through the liquid, the rotation impressed upon the direct beam would be exactly neutralized by that impressed upon the reflected one. Not so with the induced magnetic effect. Here it is manifest that the rotation would be doubled by the act of reflection.

Hence Faraday concludes that the particles of the oil of turpentine which rotate by virtue of their natural force, and those which rotate in virtue of the induced force, cannot be in the same condition. The same remark applies to all bodies which possess a natural power of rotating the plane of polarization.

And then he proceeded with exquisite skill and insight to take advantage of this conclusion. He silvered the ends of his piece of heavy glass, leaving, however, a narrow portion parallel to two edges diagonally opposed to each other unsilvered. He then sent his beam through this uncovered portion, and by suitably inclining his glass caused the beam within it to reach his eye first direct, and then after two, four, and six reflections. These corresponded to the passage of the ray once, three times, five times, and seven times through the glass. He thus established with numerical accuracy the exact proportionality of the rotation to the distance traversed by the polarized beam. Thus in one series of experiments where the rotation required by the direct beam was 12degrees, that acquired by three passages through the glass was 36degrees, while that acquired by five passages was 60degrees. But even when this method of magnifying was applied, he failed with various solid substances to obtain any effect; and in the case of air, though he employed to the utmost the power which these repeated reflections placed in his hands, he failed to produce the slightest sensible rotation.

These failures of Faraday to obtain the effect with gases seem to indicate the true seat of the phenomenon. The luminiferous ether surrounds and is influenced by the ultimate particles of matter.

The symmetry of the one involves that of the other. Thus, if the molecules of a crystal be perfectly symmetrical round any line through the crystal, we may safely conclude that a ray will pass along this line as through ordinary glass. It will not be doubly refracted. From the symmetry of the liquid figures, known to be produced in the planes of freezing, when radiant heat is sent through ice, we may safely infer symmetry of aggregation, and hence conclude that the line perpendicular to the planes of freezing is a line of no double refraction; that it is, in fact, the optic axis of the crystal. The same remark applies to the line joining the opposite blunt angles of a crystal of Iceland spar. The arrangement of the molecules round this line being symmetrical, the condition of the ether depending upon these molecules shares their symmetry; and there is, therefore, no reason why the wavelength should alter with the alteration of the azimuth round this line. Annealed glass has its molecules symmetrically arranged round every line that can be drawn through it; hence it is not doubly refractive. But let the substance be either squeezed or strained in one direction, the molecular symmetry, and with it the symmetry of the ether, is immediately destroyed and the glass becomes doubly refractive.

Unequal heating produces the same effect. Thus mechanical strains reveal themselves by optical effects; and there is little doubt that in Faraday's experiment it is the magnetic strain that produces the rotation of the plane of polarization.

同类推荐
热门推荐
  • 冬泽夏离,流转经年

    冬泽夏离,流转经年

    那一季夏末,血色如残,痛了谁的眼,伤了谁的心。韩代离,我不过是一时兴起收养了你而已,你以为你到底算什么?秦泽夜,我把自己全部交给你,望你温柔以待。便是那样的我,给了伤我至此的权利。我爱你,低入尘埃;你伤我,肆无忌惮。
  • 秦之青铜季节

    秦之青铜季节

    自嬴政即位至嬴政亲政,经历了一系列的时间庄王之死郑国渠,平嫪毐之乱,吕不韦之死,谏逐客书,嬴政在这些事件中逐步形成自己的治国思想。
  • 牵牛花瓣

    牵牛花瓣

    上巳祭,参赛作品。内容相关是恐怖灵异,探险寻宝,悬疑推理。
  • 中华人民共和国领事特权与豁免条例

    中华人民共和国领事特权与豁免条例

    为确定外国驻中国领馆和领馆成员的领事特权与豁免,便于外国驻中国领馆在领区内代表其国家有效地执行职务,制定本条例。
  • 名侦探柯南之澜殊

    名侦探柯南之澜殊

    基柯微腐向请慎入!!!她的穿越真的只是巧合么??月光下的魔法师和平成时代的福尔摩斯对决,谁先找到潘多拉的宝石?惊人真相揭晓!潘多拉的宝石竟然是······
  • 红菱笑苍穹

    红菱笑苍穹

    天元大陆分为内五洲(东、南、西、北、中、)与外四洲(南明、北冥、寅、巫),两个部分被人们统称为:天元九州。我们的主角身为地球之上,一位有着远大抱负理想的年轻人,在一天睡觉的晚上,无意中,进入了这个大陆。从此踏上了逆天改命的悲剧人生路~
  • 曦缘

    曦缘

    “我们都会死的,可你未必活过。”一句墓中话,惊醒无数修士心。风云起,四海动,闯古墓,争传承。仙路看近行远,修行可有尽头否?
  • 富克锦舆地略

    富克锦舆地略

    本书为公版书,为不受著作权法限制的作家、艺术家及其它人士发布的作品,供广大读者阅读交流。
  • 网王之腹黑情缘

    网王之腹黑情缘

    没有谁可以阻止我奔向那属于我的幸福不论如何困难,我也会不顾一切的奔向你我知道幸福的道路很漫长也很艰辛,我知道幸福来得不是和吃饭一样容易.可是亲爱的.请你坚信.我是你唯一的幸福...而你也是我唯一的幸福
  • 妹控修仙记

    妹控修仙记

    郑重提示:这是一个中二作者写的中二男主的中二之旅!如果你喜欢的那个角色在本书中错乱崩溃,请拿砖重重的拍打自己的脑袋!这是一个妹控的修真经历!(简介完了!)以下语句摘自刘正清自传:既然妹妹们都说:此生无悔入东方,来世愿入幻想乡那么,你们的哥哥大人就在此生给你们打造一个现实的幻想乡!妹妹们的愿望,就是我——刘正清,前进的方向!额,不好20000多个御版妹妹还等着我养活呢,不多说了,干活去!(在此,向所有的哥哥姐姐们道声:哥哥萨玛,姐姐萨马,有你们真好!)