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Photo effect as a reflection of an electromagnetic wave from a cathode, or a positron photo effect

According to our hypothesis, the conduction current is the current of electrons and positrons propagating in the ether, which surrounds the conductor.

And according to our hypothesis, the photo effect is not a knockout of an electron from the cathode, but a reflection of an electromagnetic wave from the cathode.

According to our hypothesis, an electromagnetic wave is formed by electrons and positrons.

And these hypotheses completely overturn our understanding of the process of the photoelectric effect.

In addition, according to our hypothesis, the discharge current of batteries is positron current.

And if the minus potential is attached to the anode, and the cathode is irradiated with light, then the photocurrent will be formed by the discharge current of the battery, plus the positrons of the electromagnetic wave reflected by the cathode, which are also attracted by the anode.

Negative potential at the anode does not allow the electrons of the electromagnetic wave to participate in the formation of the photocurrent.

If a positive potential is added to the anode, then the positrons of the electromagnetic wave will not be able to participate in the formation of the photocurrent, and the electrons of the electromagnetic wave will participate in the formation of the photocurrent. But in this case, the potential of the discharge current of the battery will be the counter current generated by the electrons of the electromagnetic wave. Therefore, when the negative voltage increases, when these potentials equalize, then the photocurrent will be zero.

Our hypothesis is consistent with the laws of the photoelectric effect.

1. The number of charges reflected by the cathode in one second is proportional to the intensity of the light falling on the cathode.

2. The kinetic energy of the charges does not depend on the intensity of the light incident on the cathode, but linearly depends on its frequency.

3. The red border of the photoelectric effect is determined by the frequency of the electromagnetic wave, which is not reflected by this cathode material, but is completely absorbed.

4. The non-inertia of the photoelectric effect proves that there is no work of charge output from the metal, there is an instantaneous reflection of an electromagnetic wave from the cathode.

  

Фотоэффект как отражение электромагнитной волны от катода,

или позитронный фотоэффект

Гипотеза о том, что током проводимости является электронно-позитронный ток, распространяющийся в окружаемом проводник эфире, вместе с гипотезой о том, что фотоэффект есть не выбивание электрона из катода, а отражение электромагнитной волны от катода, полностью переворачивает наше представление об этом процессе.

К тому же, ток разряда аккумуляторных батарей осуществляется позитронным током.

И если на анод подать минус, и катод облучать светом, то фототок будет формироваться током разряда аккумулятора, плюс отражённые катодом позитроны электромагнитной волны, которые так же притягиваются анодом.

Минусовой потенциал на аноде не позволяет электронам электромагнитной волны участвовать в формировании фототока.        

Если же на анод подать плюс, то позитроны электромагнитной волны не смогут участвовать в формировании фототока, а электроны электромагнитной волны будут участвовать в формировании фототока. Но в этом случае потенциал тока разряда аккумулятора окажется встречным току, формируемому электронами электромагнитной волны. Поэтому при повышении отрицательного напряжения, когда эти потенциалы выровняются, фототок будет равняться нулю.            . 

Наша гипотеза согласуется с законами фотоэффекта.

1. Число зарядов, отражённых катодом за одну секунду, пропорционально интенсивности света, падающего на катод.

2. Кинетическая энергия зарядов не зависит от интенсивности падающего на катод света, а линейно зависит от его частоты.  

3. Красная граница фотоэффекта определяется частотой электромагнитной волны, которая данным материалом катода не отражается, а полностью поглощается.   

4. Безинерциальность фотоэффекта доказывает, что не существует работы выхода заряда из металла, существует моментальное отражение электромагнитной волны от катода. 

 

 Подробности можно посмотреть  на сайте автора: статья  Великое объединение состоялось http://tverd4.narod.ru/100.html

 

 

Orphus

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Photo effect as a reflection of an electromagnetic wave from a cathode, or a positron photo effect // Stockholm: Swedish Digital Library (LIBRARY.SE). Updated: 02.12.2018. URL: http://library.se/m/articles/view/Photo-effect-as-reflection-of-an-electromagnetic-wave-from-a-cathode (date of access: 17.08.2019).

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