Can You Create a Plasma Chamber at Home?

  • Thread starter ElectricPaint
  • Start date
  • Tags
    Home Plasma
In summary: This is all correct information.In summary, electricPaint, you need to use a strong force field to keep the electrons close to one another in order to create an "electron cloud". This can be done with a welding arc, a microwave oven, or a CRT.
  • #1
ElectricPaint
9
0
Hello everyone,

I want to create a plasma chamber, and so far, I have a vacuum bell.

I have a couple of questions... excuse if I have the terminology wrong.

I would like to create a plasma, and then apply a DC magnetic field, so the electron cloud "separates" somewhat from the gas.

I have many questions.

  1. What gas should I use? Argon?
  2. What could I use for the high frequency for creating the plasma? Regarding equipment... what is the name of this?
  3. What power supply could I use to generate the DC magnetic field, so the electrons are displaced to the side?
  4. Any books, or website links you can suggest?

There are many more questions... yet I can start with this.
I have a mechanical vacuum pump from air conditioning work, which I hope to use for the first vacuum stage.
For further vacuum, I am not sure if to go with an oil-diffusion trap (pump?), or a turbo-molecular pump.

Thank you all for your help!
 
Physics news on Phys.org
  • #2
I really wouldn't recommend trying to make a plasma at home...especially if you're designing your own apparatus. This stuff is dangerous.

Anyway, unless you have some ridiculously strong magnet, you won't be able to "separate" the electron cloud from the ion cloud--there is simply too much attraction between the positive and negative ions for a magnet to separate them more than a micrometer (rough estimation there.) [Edit: At least for the typical plasmas like the examples I list in the next paragraph. I bet there are more obscure examples where you might be able to separate the ions with a dc magnetic field, but this would be a special case.]

If you really want to observe a plasma, why not use something that's been designed by actual engineers to be reasonably safe. A gas discharge tube is a common physics demonstration, and fluorescent lightbulbs are basically the same thing. Probably the most fun plasma-related things available are the "plasma globes" you often see at novelty stores.

Once when I wasn't being too conscious of safety, I decided to repeat a really crazy "experiment" I saw in a video on youtube. Here's the link: http://youtu.be/A7RFyh5ABcQ. Basically if you get a flame going in a microwave oven, for some reason it interacts with the microwaves and forms a cloud of what looks like plasma, which you can keep going in a steady state if you can confine it (in something that won't melt). I'm not really sure what the physics is there, though.
 
Last edited:
  • #3
Thanks for your reply Jolb!

I realize there are many health hazards involved, yet I will take them into account and deal with them the best I can.

Curiously, your off-hand estimate of separating the electron cloud a micrometer or less... that's enough for the experiment I want to conduct.

I'm going to post a simple schematic later today of what I'm thinking... so I can communicate better my goal (and you guys can tell me if yes, no, maybe, long-shot, simple).

Thank you!
 
  • #4
To separate the electrons and ions, you can use biased grids. With multiple grids, you can accelerate a beam of electrons or ions, and you can use a magnet to separate them by charge to mass ratio.
 
  • #5
Thanks Khashishi!

I'm thinking about what you posted...
I think I should now start actually creating a successful vacuum, and keep on going from there.

Here is a sketch of what I was thinking.
Please let me know if I am way off base, or... if this is possible?

plasmaSketch.jpg


What do you guys think?
 
  • #6
The magnetic field won't separate the ions and electrons unless they are also in motion. I think you are confusing magnetic field with electric field.
 
  • #7
If you have access to a welding machine, the welding arc is basically a plasma.
 
  • #8
Good feedback Khashishi and cronanster.

I do believe I am confusing a magnetic field with an electric field.

Can you think of any way where I could get some sort of "electron cloud" going, without interference (minimized) from the positive ions?
 
  • #9
Maybe you can take a cathode ray tube out of an old TV screen.
 
  • #10
ElectricPaint said:
Good feedback Khashishi and cronanster.Can you think of any way where I could get some sort of "electron cloud" going, without interference (minimized) from the positive ions?

ElectricPaint, you already know electrons are negatively charged, and that like charges repel. Whenever an electron feels the charge of a neighboring electron it tries to get away! So what you are proposing, an "electron cloud", would require a strong force field to constrain the electrons to stay near one another.

Note also, that the definition of a plasma is NOT the same as that of an "electron cloud". Plasmas normally have a mixture of both positives and negatives so the overall net charge is close to zero.

Inside a cathode ray tube (CRT) there is a stream of electrons moving from the hot emissive cathode towards the positively charged anode. Same as in a vacuum tube amplifier. In neither case is there a stable, fixed cloud of electrons.

Will you please be more specific and describe your planned project, along with your objective(s)? Then others here might be able to give some useful comments and suggestions.

Just for your reference:
http://en.wikipedia.org/wiki/Electron-cloud_effect
 
Last edited:
  • #11
lol, might want to try a lab :smile:

If it's just for fun, I think metal in the microwave makes a plasma, so you could get a chaeap microwave and a fork
 
  • #12
vasimr

I want to design a small model of vasimr at home for my school project. can anyone help me?
 

Related to Can You Create a Plasma Chamber at Home?

1. What materials do I need to create a plasma at home?

The materials needed to create a plasma at home include a high voltage power supply, a gas source (such as helium or neon), an airtight container, and electrodes made of a conductive material such as copper or tungsten.

2. Is it safe to create a plasma at home?

Creating a plasma at home can be dangerous if proper safety precautions are not taken. The high voltage power supply and gas source should be handled with caution, and the container should be properly sealed to prevent any gas leaks. It is important to follow safety guidelines and wear protective equipment when working with high voltage and gases.

3. Can I create a plasma in any gas?

No, plasma can only be created in certain gases that have low ionization energies, such as helium or neon. These gases are able to easily lose an electron and become ionized, creating a plasma state.

4. What is the purpose of creating a plasma at home?

Creating a plasma at home can have various purposes, such as conducting experiments, demonstrating scientific principles, and understanding the properties of plasma. It can also be used for practical applications, such as in plasma TVs or in plasma cutting for industrial purposes.

5. Can I create a plasma at home without a high voltage power supply?

No, a high voltage power supply is necessary to create a plasma at home. The high voltage is needed to ionize the gas and create a plasma state. Attempting to create a plasma without a high voltage power supply can be dangerous and may not yield successful results.

Similar threads

  • High Energy, Nuclear, Particle Physics
Replies
3
Views
1K
  • High Energy, Nuclear, Particle Physics
Replies
2
Views
1K
  • High Energy, Nuclear, Particle Physics
Replies
0
Views
941
  • High Energy, Nuclear, Particle Physics
Replies
2
Views
975
  • High Energy, Nuclear, Particle Physics
Replies
26
Views
6K
  • High Energy, Nuclear, Particle Physics
Replies
4
Views
1K
  • High Energy, Nuclear, Particle Physics
Replies
9
Views
1K
  • High Energy, Nuclear, Particle Physics
Replies
2
Views
7K
  • High Energy, Nuclear, Particle Physics
Replies
9
Views
3K
  • High Energy, Nuclear, Particle Physics
Replies
2
Views
1K
Back
Top