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Nirav Joshi

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Welcome to the N's world of science. Since April 2009, I am working with the JAI-RHUL as a Marie Curie Early Stage Researcher (ESR), funded by the DITANET program under FP7-people frame work. Under guidance of Dr. Stewart Boogert, my research is about developing the cavity Beam Position Monitor (BPM) systems for the high energy Linear particle accelerators, such as CLIC. The CLIC is in its conceptual design stage at the CERN, Switzerland-France. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present various challenges in terms of a physics and engineering design.
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Welcome to the my world of engineering and science. Since April 2009, I am working with the JAI-RHUL as a Marie Curie Early Stage Researcher (ESR), funded by the DITANET program under FP7-people frame work. Under guidance of Dr. Stewart Boogert, my research is about developing a radio frequency (RF) cavity Beam Position Monitor (BPM) system for the high energy linear particle accelerators, such as CLIC. The CLIC is in its conceptual design stage at the CERN, Switzerland-France. Machine parameters such as, high beam current up to 1.5A and high bunch repetition rate of 2GHz, present various challenges in terms of a physics and engineering design.
 
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The primary areas of my interests are in applied RF technology. EM (in RF range as well) energy is present almost everywhere in universe, while being base of modern communication.
  Other than Accelerator physics and application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in electromagnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, I always take a glimpse of the topics like condensed matter, super conductivity and medical technology. I always wonder about the inter connections of various technological and pure scientific branches, and now I look at the physics as a mother of all branches. Be proud be a physicist. Other than these scientific topics, I'm always fascinated by evolution of life, human psychology, world political history and economic illusions.

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Nirav Joshi

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JAI Graduate study project, 2009-2010

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Tips and methods for Instruments installation and communication.

 
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FORM FIELD OfficeLocation OfficeLocation RHUL
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Marie Curie research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present challenges in terms of a physics and engineering design.
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Welcome to the N's world of science. Since April 2009, I am working with the JAI-RHUL as a Marie Curie Early Stage Researcher (ESR), funded by the DITANET program under FP7-people frame work. Under guidance of Dr. Stewart Boogert, my research is about developing the cavity Beam Position Monitor (BPM) systems for the high energy Linear particle accelerators, such as CLIC. The CLIC is in its conceptual design stage at the CERN, Switzerland-France. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present various challenges in terms of a physics and engineering design.
 

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JAI Graduate study project, 2009-2010

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Welcome to the N's world of science. I m working with the JAI-RHUL as a Marie Curie research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present challenges in terms of a physics and engineering design.
 
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Marie Curie research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present challenges in terms of a physics and engineering design.

 

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Nirav Joshi

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Want to know more about my work?

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  Welcome to the N's world of science. I m working with the JAI-RHUL as a Marie Curie research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present challenges in terms of a physics and engineering design.
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present challenges in terms of a physics and engineering design.
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Marie Curie research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present challenges in terms of a physics and engineering design.
 

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Other than Accelerator physics and application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in Eelctro-magnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, i always take a glimpse of the topics like condensed matter, super conductivity and medical technology. I always wonder about the inter connections of various technological and pure scientific branches, and now i look at the physics as a mother of all branches. Be proud be a physicist. Other than these scientific topics, i m always fascinated by evolution of life, human psychology, world political history and economic illusions.
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Other than Accelerator physics and application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in electromagnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, I always take a glimpse of the topics like condensed matter, super conductivity and medical technology. I always wonder about the inter connections of various technological and pure scientific branches, and now I look at the physics as a mother of all branches. Be proud be a physicist. Other than these scientific topics, I'm always fascinated by evolution of life, human psychology, world political history and economic illusions.
 

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FORM FIELD Comment Comment
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like a high beam current up to 1.5A and high bunch repetition rate of 2GHz present a challange in terms of a physics and engineering design.
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like high beam current up to 1.5A and high bunch repetition rate of 2GHz present challenges in terms of a physics and engineering design.
 

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Other than Accelerator physics and application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in Eelctro-magnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, i always take a glimps of the topics like condenced matter, super conductivity and medical technology. I always wonder about the inter connections of various technological and pure scientific branches, and now i look at the physics as a mother of all branches. Be proud be a physicist. Other than these scientific topics, i m always facinated by evolution of life, human psychology, world polytical history and economic illusions.
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Other than Accelerator physics and application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in Eelctro-magnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, i always take a glimpse of the topics like condensed matter, super conductivity and medical technology. I always wonder about the inter connections of various technological and pure scientific branches, and now i look at the physics as a mother of all branches. Be proud be a physicist. Other than these scientific topics, i m always fascinated by evolution of life, human psychology, world political history and economic illusions.
 
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about develope a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like a high beam current up to 1.5A and high bunch repetition rate of 2GHz present a challange in terms of a physics and engineering design.
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about developing a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like a high beam current up to 1.5A and high bunch repetition rate of 2GHz present a challange in terms of a physics and engineering design.
 

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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about develope a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like a high beam current up to 1.5A and high bunch repetition rate of 2GHz present challange in terms of physics and engineering design.
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about develope a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like a high beam current up to 1.5A and high bunch repetition rate of 2GHz present a challange in terms of a physics and engineering design.
 

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Other than Accelerator physics and the application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in Eelctro-magnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, i always take a glimps of the topics like condenced matter, super conductivity and medical technology. I always wonder about the inter connection of various technological and pure scintific branches, and now i look at the physics at the mother of all branches. Be proud be physicist. Other than these scientific topics, i m always facinated by evolution of life, human psychology, world polytical history and economic illusions.
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Other than Accelerator physics and application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in Eelctro-magnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, i always take a glimps of the topics like condenced matter, super conductivity and medical technology. I always wonder about the inter connections of various technological and pure scientific branches, and now i look at the physics as a mother of all branches. Be proud be a physicist. Other than these scientific topics, i m always facinated by evolution of life, human psychology, world polytical history and economic illusions.
 
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Welcome to the N's world of science. I m working with the JAI-RHUL as a Merry Curry research fellow, funded by the DITANET program, since March 2009. Under guidance of Dr. Stewart Boogert, my research is about develope a cavity Beam Position Monitor (BPM) system, with nanometer resolution, for the high energy Linear particle accelerator CLIC, which is at its Conceptual Design stage at the CERN. Machine parameters like a high beam current up to 1.5A and high bunch repetition rate of 2GHz present challange in terms of physics and engineering design.
 
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Other than Accelerator physics and the application of RF and microwave to this field, topics like nuclear fusion, particle dynamics in Eelctro-magnetic (EM) field, micro and macro instabilities in the particle machines like accelerators and tokamaks attract me and generate a resonance in my thoughts. Moving onto the low energy side, i always take a glimps of the topics like condenced matter, super conductivity and medical technology. I always wonder about the inter connection of various technological and pure scintific branches, and now i look at the physics at the mother of all branches. Be proud be physicist. Other than these scientific topics, i m always facinated by evolution of life, human psychology, world polytical history and economic illusions.
 

My Links

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FORM FIELD LastName LastName Nirav
FORM FIELD OrganisationName OrganisationName
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FORM FIELD OfficeRoom OfficeRoom 0000
FORM FIELD OfficePhone OfficePhone 07503436128
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