Parameter guide
Dielectric
Dielectric thickness — distance between the buried electrode and the dielectric surface.
Substrate thickness — thickness of the material (e.g. glue) between exposed electrode and dielectric.
Permittivity — relative permittivity of the dielectric.
SEE coefficient — secondary electron emission coefficient of the dielectric.
Voltage
Maximum voltage — peak value of the applied voltage.
Rising time — time for the voltage to rise 0→peak. For a sine it equals 1/4 of the cycle, so it is derived from the frequency and not entered directly; for a pulse you set it yourself.
Frequency — for a sine, the input you set (rising time follows as 1/(4f)); for a pulse, the repetition rate, independent of rising time.
Voltage type — sinusoidal AC (Sine) or pulsed (Pulse).
Gas
Pressure / Temperature — ambient gas conditions of the discharge.
Plasma
Ion drift velocity — Vdr = μi·E, μi the ion mobility.
Plasma layer thickness — thickness of the surface streamer region.
Ionization frequency — νic, a constant ≈ 3.5×10¹¹, gas-density independent.
Characteristic field — Ec, proportional to gas density.
Electron mobility — mobility of electrons (e.g. from BOLSIG+).
Cathode potential — cathode potential drop; ≈ 600 V for SDBD in air.
Townsend coeff. A / B — αT = A·p·exp(−B·p/E).
Results
Breakdown voltage — voltage that starts the discharge.
Streamer-dielectric gap — distance from the positive streamer body to the dielectric surface.
2D / 3D discharge length — streamer propagation length; 2D is more accurate for short (ns) rising times.
Accumulated charge layer length — surface charge layer length after successive micro-discharges.
Discharge propagation time — time for the surface streamer to finish propagating.
Pulse thrust / Cycle average thrust — thrust per pulse / averaged over one duty cycle.
Is saturated? — at high sine frequency the discharge saturates and thrust no longer increases.
Induced velocity — induced flow velocity from the cycle-average thrust.
Deposited energy — energy deposited in one duty cycle.