Javascript must be enabled to continue!
Design, Installation, and First Results from the Ion Cyclotron Emission Diagnostic on TCV
View through CrossRef
TCV is a medium sized tokamak equipped with a large suite of plasma diagnostics, a versatile array of poloidal shaping coils, an electron cyclotron heating system, and a two source neutral beam injection (NBI) system. The NBI system is capable of a simultaneous injection of energetic neutrals in the co-and counter-current directions. The resulting fast ion (FI) populations are used to study a multitude of FI-driven instabilities. While plasma instabilities in the below 1 MHz frequency range can be observed via standard diagnostics such as soft x-ray detectors, magnetics, fast ion loss detectors, and reflectometers, fluctuations in the range of >10 MHz require a specialized diagnostic. For this purpose the TCV tokamak has been equipped with a dedicated ion cyclotron emission (ICE) diagnostic, following a similar approach to AUG [1] and W7-X [2]. The diagnostic consists of a pair of magnetic coils (8 turns, 177 nH, 16 mm long, 7 mm in diameter), oriented orthogonally to each other to detect magnetic field fluctuations in the toroidal and poloidal directions. The coils are housed in a stainless steel electrostatic shield with a slit and are installed on the torus low field side at the midplane location, behind graphite protection tiles. The coil electric outputs are routed to the vacuum feedthroughs via a pair of coaxial cables, at which point one of the outputs is grounded at the feedthrough, from the airside. The second output is then routed to a rectifying radio frequency wave detector and a fast digitizer in the diagnostics rack. The rectifying detector is sensitive to signals in the 10-100 MHz frequency range and can measure the signal amplitude and the phase difference between the two probes, while the frequency information of the signal is lost. The benefit of this detection method is that the output signal can be digitized at a “slow” speed (200 kHz in the case of TCV) with a low cost digitizer and the data volume per plasma discharge is low. The fast digitizer, on the other hand, preserves the frequency information, albeit with a larger data volume. For the case of TCV, a 250 MHz sampling rate digitizer has been temporarily used, while a dedicated 1 GHz digitizer is currently being implemented. First results of high frequency (>10 MHz) instabilities detected in the presence of energetic ions will be presented.
Title: Design, Installation, and First Results from the Ion Cyclotron Emission Diagnostic on TCV
Description:
TCV is a medium sized tokamak equipped with a large suite of plasma diagnostics, a versatile array of poloidal shaping coils, an electron cyclotron heating system, and a two source neutral beam injection (NBI) system.
The NBI system is capable of a simultaneous injection of energetic neutrals in the co-and counter-current directions.
The resulting fast ion (FI) populations are used to study a multitude of FI-driven instabilities.
While plasma instabilities in the below 1 MHz frequency range can be observed via standard diagnostics such as soft x-ray detectors, magnetics, fast ion loss detectors, and reflectometers, fluctuations in the range of >10 MHz require a specialized diagnostic.
For this purpose the TCV tokamak has been equipped with a dedicated ion cyclotron emission (ICE) diagnostic, following a similar approach to AUG [1] and W7-X [2].
The diagnostic consists of a pair of magnetic coils (8 turns, 177 nH, 16 mm long, 7 mm in diameter), oriented orthogonally to each other to detect magnetic field fluctuations in the toroidal and poloidal directions.
The coils are housed in a stainless steel electrostatic shield with a slit and are installed on the torus low field side at the midplane location, behind graphite protection tiles.
The coil electric outputs are routed to the vacuum feedthroughs via a pair of coaxial cables, at which point one of the outputs is grounded at the feedthrough, from the airside.
The second output is then routed to a rectifying radio frequency wave detector and a fast digitizer in the diagnostics rack.
The rectifying detector is sensitive to signals in the 10-100 MHz frequency range and can measure the signal amplitude and the phase difference between the two probes, while the frequency information of the signal is lost.
The benefit of this detection method is that the output signal can be digitized at a “slow” speed (200 kHz in the case of TCV) with a low cost digitizer and the data volume per plasma discharge is low.
The fast digitizer, on the other hand, preserves the frequency information, albeit with a larger data volume.
For the case of TCV, a 250 MHz sampling rate digitizer has been temporarily used, while a dedicated 1 GHz digitizer is currently being implemented.
First results of high frequency (>10 MHz) instabilities detected in the presence of energetic ions will be presented.
Related Results
First observations of ion cyclotron emission in the TCV tokamak
First observations of ion cyclotron emission in the TCV tokamak
Abstract
The first observations of ion cyclotron emission (ICE) in the Tokamak à Configuration Variable (TCV) tokamak are reported. The measured ICE frequency clo...
Light‐dependent hypersensitive response and resistance signaling against Turnip Crinkle Virus in Arabidopsis
Light‐dependent hypersensitive response and resistance signaling against Turnip Crinkle Virus in Arabidopsis
Summary
Resistance to Turnip Crinkle Virus (TCV) in Arabidopsis ecotype Dijon (Di)‐17 is conferred by the resistance gene
...
Deep Learning for Automated Measurement of Total Cardiac Volume for Heart Transplantation Size Matching
Deep Learning for Automated Measurement of Total Cardiac Volume for Heart Transplantation Size Matching
Abstract
Background
Total Cardiac Volume (TCV) based size matching using Computed Tomography (CT) is a novel technique to compare donor and recipient heart size in pediatr...
Manufacturing, installation, commissioning, and first results with the 3D low-temperature co-fired ceramic high-frequency magnetic sensors on the Tokamak à Configuration Variable
Manufacturing, installation, commissioning, and first results with the 3D low-temperature co-fired ceramic high-frequency magnetic sensors on the Tokamak à Configuration Variable
Innovative high-frequency magnetic sensors have been designed and manufactured in-house for installation on the Tokamak à Configuration Variable (TCV), which are now routinely oper...
Suffering of Patients with Neurogenic Thoracic Outlet Syndrome (TOS); The First Qualitative study in TOS
Suffering of Patients with Neurogenic Thoracic Outlet Syndrome (TOS); The First Qualitative study in TOS
Abstract
Background
Diagnosis of neurogenic thoracic outlet syndrome (nTOS) is hindered by symptom overlap with cervical radiculopathy, carpal tunnel syndrome, or psychosomatic dis...
Investigating the influence of divertor baffles on nitrogen-seeded detachment in TCV with SOLPS-ITER simulations and TCV experiments
Investigating the influence of divertor baffles on nitrogen-seeded detachment in TCV with SOLPS-ITER simulations and TCV experiments
Abstract
Plasma edge simulations with the SOLPS-ITER code are performed to study the influence of divertor baffles on nitrogen-seeded detachment in Tokamak à Configu...
Chemical pre-intercalation synthesis approach for novel layered cathode materials for Li-ion and beyond Li-ion batteries
Chemical pre-intercalation synthesis approach for novel layered cathode materials for Li-ion and beyond Li-ion batteries
Beyond-lithium ion (BLI) alkali ion-based batteries are rising in interest among researchers because of their utilization of more abundant, cost-effective charge carriers, includin...
Signaling requirements and role of salicylic acid in HRT‐ and rrt‐mediated resistance to turnip crinkle virus in Arabidopsis
Signaling requirements and role of salicylic acid in HRT‐ and rrt‐mediated resistance to turnip crinkle virus in Arabidopsis
SummaryInoculation of turnip crinkle virus (TCV) on the resistant Arabidopsis ecotype Di‐17 elicits a hypersensitive response (HR), which is accompanied by increased expression of ...

