Experimental and Numerical Studies of Neutral Gas Depletion in an Inductively Coupled Plasma

Experimental and Numerical Studies of Neutral Gas Depletion in an Inductively Coupled Plasma PDF Author: Masashi Shimada
Publisher:
ISBN:
Category :
Languages : en
Pages : 118

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The central theme of this dissertation is to explore the impact of neutral depletion and coupling between plasma and neutral gas in weakly ionized unmagnetized plasma. Since there have been few systematic studies of the mechanism which leads to non-uniform neutral distribution in processing plasmas, this work investigated the spatial profiles of neutral temperature and pressure experimentally, and the mechanism of resulting neutral depletion by simulation. The experimental work is comprised of neutral temperature measurements using high resolution atomic spectroscopy and molecular spectroscopy, and neutral pressure measurements considering thermal transpiration. When thermal transpiration effects are used to correct the gas pressure measurements, the total pressure remains constant regardless of the plasma condition. Since the neutral gas follows the ideal gas law, the neutral gas density profile is also obtained from the measured neutral gas temperature and the corrected pressure measurements. The results show that neutral gas temperature rises close to 900K and the neutral gas density at the center of plasma chamber has a significant (factor of 2-4) decrease in the presence of a plasma discharge. In numerical work, neutral and ion transport phenomena were simulated by a hybrid-type direct simulation Monte Carlo (DSMC) method of one dimensional (1D) electrostatic plasma to identify the mechanism of the neutral gas density depletion in Ar/N2 mixtures. The simulation reveals that the neutral depletion is the result of the interplay between plasma and neutral gas, and a parametric study indicates that neutral depletion occurs mainly due to gas heating and pressure balance for the typical condition of plasma processing. In high density plasma sources where the plasma pressure becomes comparable to neutral pressure, total pressure (neutral pressure and plasma pressure) is conserved before and after the discharge. Therefore the neutral pressure is reduced due the balance of total pressure with plasma pressure (mainly electron pressure). Neutral gas heating is due to the elastic scattering and charge exchange collisions with ions, which are accelerated by the bulk plasma ambi-polar electrostatic field. The excellent agreement between experiment and simulation, and parametric study reveal that gas heating and pressure balance are the main mechanisms of gas depletion in an inductively coupled plasma. Coupling between plasma and neutral gas was observed by both experiment and simulation. The resulting gas depletion enhances the plasma transport to the surrounding wall, increases the particle loss, and decreases the plasma density.

Experimental and Numerical Studies of Neutral Gas Depletion in an Inductively Coupled Plasma

Experimental and Numerical Studies of Neutral Gas Depletion in an Inductively Coupled Plasma PDF Author: Masashi Shimada
Publisher:
ISBN:
Category :
Languages : en
Pages : 118

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Book Description
The central theme of this dissertation is to explore the impact of neutral depletion and coupling between plasma and neutral gas in weakly ionized unmagnetized plasma. Since there have been few systematic studies of the mechanism which leads to non-uniform neutral distribution in processing plasmas, this work investigated the spatial profiles of neutral temperature and pressure experimentally, and the mechanism of resulting neutral depletion by simulation. The experimental work is comprised of neutral temperature measurements using high resolution atomic spectroscopy and molecular spectroscopy, and neutral pressure measurements considering thermal transpiration. When thermal transpiration effects are used to correct the gas pressure measurements, the total pressure remains constant regardless of the plasma condition. Since the neutral gas follows the ideal gas law, the neutral gas density profile is also obtained from the measured neutral gas temperature and the corrected pressure measurements. The results show that neutral gas temperature rises close to 900K and the neutral gas density at the center of plasma chamber has a significant (factor of 2-4) decrease in the presence of a plasma discharge. In numerical work, neutral and ion transport phenomena were simulated by a hybrid-type direct simulation Monte Carlo (DSMC) method of one dimensional (1D) electrostatic plasma to identify the mechanism of the neutral gas density depletion in Ar/N2 mixtures. The simulation reveals that the neutral depletion is the result of the interplay between plasma and neutral gas, and a parametric study indicates that neutral depletion occurs mainly due to gas heating and pressure balance for the typical condition of plasma processing. In high density plasma sources where the plasma pressure becomes comparable to neutral pressure, total pressure (neutral pressure and plasma pressure) is conserved before and after the discharge. Therefore the neutral pressure is reduced due the balance of total pressure with plasma pressure (mainly electron pressure). Neutral gas heating is due to the elastic scattering and charge exchange collisions with ions, which are accelerated by the bulk plasma ambi-polar electrostatic field. The excellent agreement between experiment and simulation, and parametric study reveal that gas heating and pressure balance are the main mechanisms of gas depletion in an inductively coupled plasma. Coupling between plasma and neutral gas was observed by both experiment and simulation. The resulting gas depletion enhances the plasma transport to the surrounding wall, increases the particle loss, and decreases the plasma density.

Plasma Science and Technology for Emerging Economies

Plasma Science and Technology for Emerging Economies PDF Author: Rajdeep Singh Rawat
Publisher: Springer
ISBN: 9811042179
Category : Science
Languages : en
Pages : 804

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Book Description
This book highlights plasma science and technology-related research and development work at institutes and universities networked through Asian African Association for Plasma Training (AAAPT) which was established in 1988. The AAAPT, with 52 member institutes in 24 countries, promotes the initiation and intensification of plasma research and development through cooperation and technology sharing. With 13 chapters on fusion-relevant, laboratory and industrial plasmas for wide range of applications and basic research and a chapter on AAAPT network, it demonstrates how, with collaborations, high-quality, industrially relevant academic and scientific research on fusion, industrial and laboratory plasmas and plasma diagnostics can be successfully pursued in small research labs. These plasma sciences and technologies include pioneering breakthroughs and applications in (i) fusion relevant research in the quest for long-term, clean energy source development using high-temperature, high- density plasmas and (ii) multibillion-dollar, low-temperature, non-equilibrium and thermal industrial plasmas used in processing, synthesis and electronics.

Experimental Studies of Inductively Coupled Plasmas

Experimental Studies of Inductively Coupled Plasmas PDF Author: Harmeet Singh
Publisher:
ISBN:
Category :
Languages : en
Pages : 532

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Dissertation Abstracts International

Dissertation Abstracts International PDF Author:
Publisher:
ISBN:
Category : Dissertations, Academic
Languages : en
Pages : 946

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Reflectivity Measurements of Amorphous Hydrocarbon Films on Nickel Mirrors

Reflectivity Measurements of Amorphous Hydrocarbon Films on Nickel Mirrors PDF Author: Andy Chen
Publisher:
ISBN:
Category :
Languages : en
Pages : 172

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Fundamentals of Electric Propulsion

Fundamentals of Electric Propulsion PDF Author: Dan M. Goebel
Publisher: John Wiley & Sons
ISBN: 0470436263
Category : Technology & Engineering
Languages : en
Pages : 528

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Book Description
Throughout most of the twentieth century, electric propulsion was considered the technology of the future. Now, the future has arrived. This important new book explains the fundamentals of electric propulsion for spacecraft and describes in detail the physics and characteristics of the two major electric thrusters in use today, ion and Hall thrusters. The authors provide an introduction to plasma physics in order to allow readers to understand the models and derivations used in determining electric thruster performance. They then go on to present detailed explanations of: Thruster principles Ion thruster plasma generators and accelerator grids Hollow cathodes Hall thrusters Ion and Hall thruster plumes Flight ion and Hall thrusters Based largely on research and development performed at the Jet Propulsion Laboratory (JPL) and complemented with scores of tables, figures, homework problems, and references, Fundamentals of Electric Propulsion: Ion and Hall Thrusters is an indispensable textbook for advanced undergraduate and graduate students who are preparing to enter the aerospace industry. It also serves as an equally valuable resource for professional engineers already at work in the field.

Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 704

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Plasma Physics Index

Plasma Physics Index PDF Author:
Publisher:
ISBN:
Category : Plasma (Ionized gases)
Languages : en
Pages : 936

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Physics Briefs

Physics Briefs PDF Author:
Publisher:
ISBN:
Category : Physics
Languages : en
Pages : 1162

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Reports of the Institute of Fluid Science, Tohoku University

Reports of the Institute of Fluid Science, Tohoku University PDF Author:
Publisher:
ISBN:
Category : Fluid dynamics
Languages : en
Pages : 48

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