[[abstract]]In this report, plasma heating mode transitions at different pressures in an inductively coupled plasma source are investigated. Results show that the plasma properties abruptly change as the mode transition occurs at pressures where the electron - neutral particle collision frequency is higher than the wave frequency while they slowly vary at the low-pressure side. Additionally, the electron energy distribution function changes from a Druyvesten to a Maxwellian distribution in mode transitions at high pressure.[[fileno]]2010137010040[[department]]物理
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Radio frequency (RF) inductively coupled plasma (ICP) have been known and studied for over a century...
Abstract In this work, we have studied the transition from collisional to stochastic heating regime ...
Inductively coupled plasmas have two operational modes, i.e., capacitive (E) and inductive (H). In t...
Inductively coupled plasmas have two operational modes, i.e., capacitive (E) and inductive (H). In t...
Considering the gas pressure and radio frequency power change, the mode transition of E↔H were inves...
Radio frequency (RF) inductively coupled plasma (ICP) have been known and studied for over a century...
Radio frequency (RF) inductively coupled plasma (ICP) have been known and studied for over a century...
We used helical antenna-coupled radio frequency (RF) plasmas to study the evolution of the mode tran...
We used helical antenna-coupled radio frequency (RF) plasmas to study the evolution of the mode tran...
Radio Frequency (RF) Inductively Coupled Plasmas (ICPs) are widely known for their two discharge mod...
Changes of the electron dynamics in hydrogen (H 2 ) radio-frequency (RF) inductively coupled plasmas...
Remarkable changes of the electron temperature and the plasma density by increasing bias power were ...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Radio frequency (RF) inductively coupled plasma (ICP) have been known and studied for over a century...
Abstract In this work, we have studied the transition from collisional to stochastic heating regime ...
Inductively coupled plasmas have two operational modes, i.e., capacitive (E) and inductive (H). In t...
Inductively coupled plasmas have two operational modes, i.e., capacitive (E) and inductive (H). In t...
Considering the gas pressure and radio frequency power change, the mode transition of E↔H were inves...
Radio frequency (RF) inductively coupled plasma (ICP) have been known and studied for over a century...
Radio frequency (RF) inductively coupled plasma (ICP) have been known and studied for over a century...
We used helical antenna-coupled radio frequency (RF) plasmas to study the evolution of the mode tran...
We used helical antenna-coupled radio frequency (RF) plasmas to study the evolution of the mode tran...
Radio Frequency (RF) Inductively Coupled Plasmas (ICPs) are widely known for their two discharge mod...
Changes of the electron dynamics in hydrogen (H 2 ) radio-frequency (RF) inductively coupled plasmas...
Remarkable changes of the electron temperature and the plasma density by increasing bias power were ...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...
Transitions between the two discharge modes in a low-frequency (∼460 kHz) inductively coupled plasma...