фотоны, достигшие стекла, должны быть нацелены правильно, и ни один из них не должен отразиться. Эта теория плоха тем, что не согласуется с экспериментом: даже пройдя сквозь много слоев стекла, 4 % фотонов, достигших данной поверхности, отражаются от нее.
Сколько бы мы ни старались изобрести разумную теорию, объясняющую, как фотон «решает», проходить ли ему сквозь стекло или отскакивать назад, предсказать, как будет двигаться данный фотон, невозможно. Философы утверждали, что если одинаковые условия не приводят всегда к одинаковым результатам, предсказания невозможны и наука потерпит крах. Вот условие, которое приводит к различным результатам: одинаковые фотоны летят в одном направлении к одному куску стекла. Мы не можем предсказать, попадет ли данный фотон в А или В. Все, что мы можем предсказать – это то, что из 100 вылетевших фотонов в среднем 4 отразятся от поверхности. Значит ли это, что физику, науку великой точности, свели к тому, чтобы вычислять вероятность события и не предсказывать точно, что произойдет? Да. Так оно и есть. Это отступление. Природа позволяет нам вычислять только вероятности. Но наука не потерпела краха.
Если частичное отражение от одной поверхности – это непостижимая загадка и трудная проблема, то частичное отражение от двух или более поверхностей совершенно ошеломляет. Позвольте показать почему. Поставим второй эксперимент, в котором мы будем измерять частичное отражение света от двух поверхностей. Заменим кусок стекла очень тонкой стеклянной пластинкой со строго параллельными поверхностями и поместим фотоумножители под пластинкой на пути света от источника (см. рис. 4). На этот раз фотоны могут отразиться от передней или задней поверхности и попасть в А; все остальные попадут в В. Мы могли бы ожидать, что передняя поверхность отразит 4 % света, а задняя – 4 % из оставшихся 96 %, т. е. в целом отразится примерно 8 %. Так что мы должны обнаружить, что из каждых 100 фотонов, испускаемых источником, примерно 8 попадут в А.
В действительности в этих тщательно контролируемых лабораторных условиях очень редко 8 из 100 фотонов попадают в А. С некоторыми пластинками мы постоянно получаем 15 или 16 фотонов – вдвое больше ожидаемого результата! Другие пластинки всегда дают 1 или 2 фотона, третьи – 10, а от некоторых свет вообще не отражается! Чем объясняются эти ненормальные результаты? Проверив качество и однородность пластинок, мы обнаруживаем, что они лишь слегка различаются толщиной.
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Рис. 4. Эксперимент для измерения частичного отражения света от двух поверхностей стекла. Фотоны могут попасть в фотоумножитель А, отразившись либо от передней, либо от задней поверхности стеклянной пластинки; кроме того, они могут пройти сквозь обе поверхности и попасть в фотоумножитель В. В зависимости от толщины стекла от 0 до 16 фотонов из каждых 100 попадают в фотоумножитель А. Эти результаты представляют трудность для любой разумной теории, включая теорию «дырок и пятен» (см. рис. 3). Оказывается, частичное отражение может быть «погашено» или «усилено» наличием добавочной поверхности.