- Cathode ray
Cathode rays (also called an electron beam or e-beam) are streams of
electron s observed invacuum tube s, i.e. evacuated glass tubes that are equipped with at least twoelectrode s, acathode (negative electrode) and ananode (positive electrode) in a configuration known as adiode .When the cathode is heated, electrons are emitted from the metal. These are attracted to the anode. If the inner glass walls behind the anode are coated with a
fluorescent material called aphosphor the incident electrons induce a glow. The presence of cathode rays was first postulated in early studies in vacuum tubes by placing metal shapes between the electrodes, thereby casting a shadow on the phosphorescent coating. This suggested that the cause of thelight emission was due to rays emitted by the cathode and hitting the coating. They travel towards the anode in straight lines and continue past it for some distance.History
After the 1650 invention of the
vacuum pump byOtto von Guericke , physicists began to experiment with mixtures ofrarefied air and electricity. In 1705, it was noted that electrostatic generator sparks travel a longer distance in rarefied air than in standard air. The scientists of the day did not think this could happen. In 1838,Michael Faraday passed current through a rarefied air filled glass tube and noticed a strange light arc with its beginning at thecathode (negative electrode) and its end almost at the anode (positive electrode). The only place where there was no luminescence was just in front of the cathode, which came to be called the "cathode dark space", "Faraday dark space" or "Crookes dark space". Hence, it became known that whenever avoltage is applied to rarefied air, light is produced.Scientists began traveling from town-to-town delighting audiences by making light glow in glass tubes. They did this by first taking an air-filled glass tube of which they would pump the air out. Next, wires would be attached at the opposite ends of the tube, and then the voltage would be turned up. This would make the tube glow in lovely patterns. In 1857, German physicist and Glass blower
Heinrich Geissler sucked even more air out with an improved pump and noticed a fluorescent glow, thus inventing theGeissler tube . While Geissler tubes are intended to cause an enclosed low pressure gas to glow, observers noticed that certain glasses used in the tube envelope (enclosure) would glow, but only at the end connected to the positive side of the power supply. Special tubes were developed for the study of these rays byWilliam Crookes and are calledCrookes tube s.Toward the end of the 19th century, this phenomenon was studied in great detail by physicists, yielding a
Nobel Prize , for example, toPhilipp von Lenard . It was soon understood that cathode rays consist of the actual carriers of electricity which are now known aselectron s. The fact that the cathode emits the rays showed that electrons have negative charge.Properties of Cathode Rays
Like a wave:
* they travelled in straight lines
* Produced a shadow when obstructed by objects
* could pass through thin metal foils without disturbing them (Tested by New Zealander Ernest Rutherford using gold foil.)These conflicting properties caused disruptions when trying to classify it as a wave or article. Crookes insisted it was a particle, whilst Hertz maintained it was a wave. Theebate was resolved when an electric field was used to deflect the rays by [J. J. ThomsoThis evidence was strong because scientists knew it was impossible to deflect elecmagnetic waves with an electric.
ee also
*α (alpha) particles
*β (beta) particles
*Electron
*Electron beam processing
*Electron gun
*Electron irradiation
*Ionising radiation
*Particle accelerator
*Rays:
**γ (gamma) rays
**n (neutron) rays
**δ (delta) rays
**ε (epsilon) rays
*Sterilisation (microbiology) References
External links
* [http://members.chello.nl/~h.dijkstra19/page3.html The Cathode Ray Tube site]
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