1. Plasma state
In many semiconductor manufacturing processes a plasma is used, be it in sputtering, deposition processes, or dry etching. An important point here is that the wafer remains cold in the plasma. This may sound contradictory at first, since the electrons in the plasma are extraordinarily hot, at several tens of thousands of degrees. However, they are so light that upon collision they hardly transfer any energy to the heavy gas particles – the gas itself, and with it the wafer, therefore remain close to room temperature. Such a plasma, in which the electrons and the gas do not have the same temperature, is called a non-equilibrium plasma. Only for this reason can wafers that already carry a metallization be processed in a plasma at all.
Plasma is also referred to as the fourth state of matter. A state of matter is a qualitative condition of substances that depends on temperature and pressure. The three states solid, liquid, and gaseous are also encountered in everyday life. If the temperature is low, every atom in a substance is fixed rigidly at one point. Attractive forces prevent them from moving. At absolute zero (-273.15 °C) substances also do not undergo any reaction. As the temperature increases, the particles begin to oscillate, and the bonds between the atoms become more unstable. Once the melting point is reached, a substance transitions from the first to the second state of matter: ice (solid) turns into water (liquid).
The attractive forces in liquid substances are still present, but the particles can shift position and no longer have fixed places as in the solid state; the particles adapt, for example, to a given shape. If the temperature is increased further, the bonds break apart completely, and the particles move independently of one another. At the boiling point, a substance transitions from the second to the third state of matter: water (liquid) turns into water vapor (gaseous).
While the volume of solids and liquids is constant, gaseous substances completely fill the available space; the particles distribute themselves evenly throughout the entire volume.
Every substance has a very specific melting point and boiling point. Silicon melts at 1414 °C and transitions into the gaseous state at 2900 °C. If even more energy is supplied to a substance, collisions between the particles knock electrons out of the outermost electron shell. Free electrons and positively charged ions are now present in the space: the plasma state has been reached.