В действительности, не отдавая себе в этом отчета, Бекке- рель открыл радиоактивность. Если для получения рентгеновских лучей нужно было высокое напряжение, происхождение лучей Беккереля было неизвестно, и данная неизвестность привлекла многих исследователей.
ФЛУОРЕСЦЕНЦИЯ И ФОСФОРЕСЦЕНЦИЯ
Флуоресценция — характеристика некоторых объектов, поглощающих энергию (например, от видимого ультрафиолетового или рентгеновского излучения, от окружающей среды), а затем испускающих энергию на другой длине волн, отличной от первоначальной, в видимом спектре на очень короткий момент (на 10>-8 секунды). Это явление происходит при любой температуре, поэтому данные минералы светятся даже при температуре окружающей среды; явление нельзя отнести к тепловым, например к накаливанию и термолюминесценции. Флуоресценция прекращается, когда источник энергии исчезает. Фосфоресценция тоже может обнаруживаться естественным образом в ответном испускании света минералами, при этом фосфоресцентные минералы имеют большую длительность остаточного свечения, даже когда источник света устранен. Продолжительность ответного свечения может составлять от одной секунды до нескольких лет. Соответственно, фосфоресцентные материалы способны светиться в темноте сами по себе.
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Облученные коротковолновым ультрафиолетовым (УФ) излучением, урановый шар слева — флуоресцентный, кальцит — фосфоресцентный.
ИОНИЗАЦИЯ И РЕНТГЕНОВСКИЕ ЛУЧИ
Когда появилось известие об открытии рентгеновских лучей, Томсон принял решение немедленно приступить к их изучению и предложил своему ассистенту помочь ему в этом деле. В мае 1896 года Резерфорд написал будущей жене о новом направлении исследований:
"Томсон был очень занят изучением нового способа фотографирования, открытого Рентгеном [...]. Профессор пытается открыть истинную причину возникновения и природу волн, его цель — прежде других разобраться в теории материи, так как сейчас все исследователи Европы начали войну с этой проблемой".
В 1896 году Резерфорд и Томсон представили научному сообществу данные о том, что рентгеновские лучи ионизировали газы, то есть газ оказывался лучшим проводником электричества при рентгеновском облучении. Это свойство, которое начали использовать для идентификации рентгеновских лучей, было характерно и для других видов излучения, поэтому предположили, что рентгеновские лучи могли оказаться одним из видов электромагнитного излучения. Немецкий физик Макс фон Лауэ (1879-1960) смог подтвердить эту гипотезу спустя два десятилетия.
Томсон отдавал все силы исследованиям катодных лучей, и его работу венчало открытие: катодные лучи оказались отрицательно заряженными частицами, поток которых возникал из атомов. Сразу после этого открытия Томсон предложил свою модель атома.