Can work function be changed by charge-bias?

In summary, the flow of electrons through a vacuum tube is due to an electric field that is just below the threshold of flow. When the voltage of the power supply is adjusted to just the point where flow ceases, the increased electron energy and electric field allows the electrons to escape.
  • #1
AshsZ
17
0
Hypothetical device:

Vacuum Tube
Two tungsten electrode plates at each end

The work function of tungsten is ~4.5V.

Lets attach a power supply to the two electrodes with a potential difference of 4.0V.

Question is, by biasing the two plates in such manner, is the thermionic discharge potential at the cathode reduced to 0.5V?

rephrase: If 0.5V of thermal-equivalent heat is applied to this already voltage-biased cathode, will the conduction electrons possesses ample kinetic energy to escape?
 
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  • #2
AshsZ said:
Hypothetical device:

Vacuum Tube
Two tungsten electrode plates at each end

The work function of tungsten is ~4.5V.

Lets attach a power supply to the two electrodes with a potential difference of 4.0V.

Question is, by biasing the two plates in such manner, is the thermionic discharge potential at the cathode reduced to 0.5V?

rephrase: If 0.5V of thermal-equivalent heat is applied to this already voltage-biased cathode, will the conduction electrons possesses ample kinetic energy to escape?

The work function of a given material is in terms of energy, not potential difference. The thing you also have to remember is that electrons "feel" electric field, not voltage potential. I can have a voltage difference of 4V between two plates, but have their separation be several miles. Clearly that is almost 0 electric field, though, so the electrons won't feel much of a force.
 
  • #3
I see. How about in the case of using a much higher voltage power supply with this tube - would make it analogous to a CRT and electrons will flow through the tube, which I know would work. From your description the reason for the flow of electrons is because there is a sufficient electrostatic field between these two plates.

With this modified hypothetical vacuum tube, having a power supply that we can adjust the voltage output, we adjust the voltage just to the point where we can measure a current. Then we back the voltage down just to the point where flow ceases. In this condition, we then add heat to the cathode.

As the cathode increases in temperature, its valence electrons will increase in kinetic energy. Would the combination of the increased electron energy (through heating) and the large electric field that is just below threshold allow the electrons to finally flow through the tube?
 

Related to Can work function be changed by charge-bias?

What is work function?

Work function is the minimum amount of energy required for an electron to be emitted from a material's surface.

How is work function related to charge-bias?

Charge-bias refers to the difference in electric potential between two points. This potential difference can alter the work function of a material, making it easier or harder for electrons to be emitted.

Can work function be changed by charge-bias?

Yes, work function can be changed by charge-bias. As mentioned, the electric potential difference can alter the work function of a material, which in turn affects the emission of electrons.

What factors influence the change of work function by charge-bias?

The main factors that influence the change of work function by charge-bias include the material's physical and chemical properties, the magnitude of the charge-bias, and the direction of the electric field.

Why is understanding the relationship between work function and charge-bias important?

Understanding this relationship is crucial in various scientific fields, such as materials science, nanotechnology, and surface physics. It allows us to manipulate the emission of electrons from a material's surface, which has practical applications in electronic devices and energy harvesting.

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