The absolute density of atomic hydrogen excited states in two different regimes of a magnetized expanding plasma is determined using emission and absorption spectroscopy. First evidence has been found for the presence of high densities of negative ions in the "atomic" (recombining) regime of an expanding hydrogen plasma. Several clear observations of the presence of "hot" electrons have been made in the "molecular" (ionizing) regime of the expanding plasma. For both regimes the absolute density of atomic hydrogen in the ground state and the degree of plasma dissociation have been determine
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
A weakly magnetized expanding hydrogen plasma was investigated by means of optical emission spectros...
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...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
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...
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...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
A weakly magnetized expanding hydrogen plasma was investigated by means of optical emission spectros...
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...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
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...
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...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
The abs. d. of at. hydrogen excited states in a magnetized expanding thermal plasma is detd. using e...
A weakly magnetized expanding hydrogen plasma was investigated by means of optical emission spectros...