Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied to measure the plasma parameters of an expanding magnetized hydrogen plasma jet. The rotational temperature of the excited state H2(d2¿u) has been determined by analyzing the intensity distribution of the spectral lines of the Fulcher-a system of H2. The gas temperature in the plasma, which is twice the value of the rotational temperature is equal to ¿ 520 K. Several clear indications of presence of the ‘‘hot’’ electrons have been observed in the plasma: (1) Langmuir probe measurements (Te¿1.4 eV), (2) appearance of the Fulcher-a system of H2 (excitation potential ¿E=13.87 eV), (3) low rotational temperature (T*rot¿260 K) of the excited H2(d...
The absolute density of atomic hydrogen excited states in two different regimes of a magnetized expa...
The absolute density of atomic hydrogen excited states in two different regimes of a magnetized expa...
International audienceA 13.56 MHz RF discharge in hydrogen was studied within the pressure range of ...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
The absolute density of atomic hydrogen excited states in two different regimes of a magnetized expa...
The absolute density of atomic hydrogen excited states in two different regimes of a magnetized expa...
International audienceA 13.56 MHz RF discharge in hydrogen was studied within the pressure range of ...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
Optical emission and absorption spectroscopy and double Langmuir probe diagnostics have been applied...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
We present detailed spatial density measurements of H(n = 2), i.e. the first excited state of atomic...
The absolute density of atomic hydrogen excited states in two different regimes of a magnetized expa...
The absolute density of atomic hydrogen excited states in two different regimes of a magnetized expa...
International audienceA 13.56 MHz RF discharge in hydrogen was studied within the pressure range of ...