A multi-purpose reciprocating probe drive system for studying the effect of gas-puffs on edge plasma dynamics in the ADITYA-U tokamak

Fuente: arXiv
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Autori principali: Singh, Kaushlender, Hegde, Bharat, Kumawat, Ashok K., Kumar, Ankit, Khan, M. S., Dolui, Suman, Hoque, Injamul, Macwan, Tanmay, Patel, Sharvil, Kanik, Abha, Yadav, Komal, Banerjee, Soumitra, Raj, Harshita, Kumawat, Devilal, Gautam, Pramila, Kumar, Rohit, Aich, Suman, Pradhan, Laxmikanta, Patel, Ankit, Galodiya, Kalpesh, Kumar, Abhijeet, Pandya, Shwetang, Patel, K. M., Jadeja, K. A., Raval, D. C., Tanna, R., Ghosh, Joydeep
Natura: Preprint
Pubblicazione: 2025
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author Singh, Kaushlender
Hegde, Bharat
Kumawat, Ashok K.
Kumar, Ankit
Khan, M. S.
Dolui, Suman
Hoque, Injamul
Macwan, Tanmay
Patel, Sharvil
Kanik, Abha
Yadav, Komal
Banerjee, Soumitra
Raj, Harshita
Kumawat, Devilal
Gautam, Pramila
Kumar, Rohit
Aich, Suman
Pradhan, Laxmikanta
Patel, Ankit
Galodiya, Kalpesh
Kumar, Abhijeet
Pandya, Shwetang
Patel, K. M.
Jadeja, K. A.
Raval, D. C.
Tanna, R.
Ghosh, Joydeep
author_facet Singh, Kaushlender
Hegde, Bharat
Kumawat, Ashok K.
Kumar, Ankit
Khan, M. S.
Dolui, Suman
Hoque, Injamul
Macwan, Tanmay
Patel, Sharvil
Kanik, Abha
Yadav, Komal
Banerjee, Soumitra
Raj, Harshita
Kumawat, Devilal
Gautam, Pramila
Kumar, Rohit
Aich, Suman
Pradhan, Laxmikanta
Patel, Ankit
Galodiya, Kalpesh
Kumar, Abhijeet
Pandya, Shwetang
Patel, K. M.
Jadeja, K. A.
Raval, D. C.
Tanna, R.
Ghosh, Joydeep
contents This article reports the development of a versatile high-speed reciprocating drive system (HRDS) with interchangeable probe heads to characterize the edge plasma region of ADITYA-U tokamak. This reciprocating probe drive system consisting of Langmuir and magnetic probe heads, is designed, fabricated, installed, and operated for studying the extent of fuel/impurity gas propagation and its influence on plasma dynamics in the far-edge region inside the last closed magnetic flux surface (LCFS). The HRDS is driven by a highly accurate, easy-to-control, dynamic, brushless, permanently excited synchronous servo motor operated by a PXI-commanded controller. The system is remotely operated and allows for precise control of the speed, acceleration, and distance traveled of the probe head on a shot-to-shot basis, facilitating seamless control of operations according to experimental requirements. Using this system, consisting of a linear array of Langmuir probes, measurements of plasma density, temperature, potential, and their fluctuations revealed that the fuel gas-puff impact these mean and fluctuating parameters up to three to four cm inside the LCFS. Attaching an array of magnetic probes to this system led to measurements of magnetic fluctuations inside the LCFS. The HRDS system is fully operational and serves as an important diagnostic tool for ADITYA-U tokamak.
format Preprint
id arxiv_https___arxiv_org_abs_2501_04462
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A multi-purpose reciprocating probe drive system for studying the effect of gas-puffs on edge plasma dynamics in the ADITYA-U tokamak
Singh, Kaushlender
Hegde, Bharat
Kumawat, Ashok K.
Kumar, Ankit
Khan, M. S.
Dolui, Suman
Hoque, Injamul
Macwan, Tanmay
Patel, Sharvil
Kanik, Abha
Yadav, Komal
Banerjee, Soumitra
Raj, Harshita
Kumawat, Devilal
Gautam, Pramila
Kumar, Rohit
Aich, Suman
Pradhan, Laxmikanta
Patel, Ankit
Galodiya, Kalpesh
Kumar, Abhijeet
Pandya, Shwetang
Patel, K. M.
Jadeja, K. A.
Raval, D. C.
Tanna, R.
Ghosh, Joydeep
Plasma Physics
This article reports the development of a versatile high-speed reciprocating drive system (HRDS) with interchangeable probe heads to characterize the edge plasma region of ADITYA-U tokamak. This reciprocating probe drive system consisting of Langmuir and magnetic probe heads, is designed, fabricated, installed, and operated for studying the extent of fuel/impurity gas propagation and its influence on plasma dynamics in the far-edge region inside the last closed magnetic flux surface (LCFS). The HRDS is driven by a highly accurate, easy-to-control, dynamic, brushless, permanently excited synchronous servo motor operated by a PXI-commanded controller. The system is remotely operated and allows for precise control of the speed, acceleration, and distance traveled of the probe head on a shot-to-shot basis, facilitating seamless control of operations according to experimental requirements. Using this system, consisting of a linear array of Langmuir probes, measurements of plasma density, temperature, potential, and their fluctuations revealed that the fuel gas-puff impact these mean and fluctuating parameters up to three to four cm inside the LCFS. Attaching an array of magnetic probes to this system led to measurements of magnetic fluctuations inside the LCFS. The HRDS system is fully operational and serves as an important diagnostic tool for ADITYA-U tokamak.
title A multi-purpose reciprocating probe drive system for studying the effect of gas-puffs on edge plasma dynamics in the ADITYA-U tokamak
topic Plasma Physics
url https://arxiv.org/abs/2501.04462