Javascript must be enabled to continue!
Laser and microwave instrumentation for ITER and future reactors
View through CrossRef
Abstract
ITER diagnostics include an extensive set of
laser and microwave diagnostics to give access to a wealth of information on the
core and edge plasma and to support high performance operation of ITER. For
example, Core and Edge Thomson scattering systems build detailed density and
temperature profiles on time scales much faster than τ
E
to follow transient
events; ECE and reflectometry add time resolution to follow MHD
events. Implementing these diagnostics is challenging, needing a panoply of
technologies to keep them functioning reliably for thousands of hours despite
extreme events such as disruptions and wall conditioning cycles. Shielding,
shutters and cleaning systems protect the forward elements of most optical
systems from the build-up of deposits and damage. Still, plasma-facing mirrors
must survive laser loads and endure erosion, deposition and in-situ RF
cleaning. Calibration and monitoring systems ensure accurate and drift-free
operation. These support systems are also not straightforward and required
specific R&D. Access also drives the design: to deal with the neutron
and gamma sources yet allow maintenance of activated components, ITER uses
large, multi-purpose ports that couple otherwise distinct systems into modules
for maintenance. Machine movement requires provisions to maintain alignment and
calibration, from these port plugs, shown in figure 1, to the
accessible areas 10–50 m away. A final complication comes from the difficulty of
employing electronics near the plugs. Extensive qualification for radiation
resistance is needed. This paper examines design adaptations that ITER adopted
for its near-reactor environment, consider the lessons learnt from the ITER
design activity specifically for laser and microwave systems and lays out some
possible evolution paths for the reactor diagnostician that must follow a more
industrial approach.
Title: Laser and microwave instrumentation for ITER and future reactors
Description:
Abstract
ITER diagnostics include an extensive set of
laser and microwave diagnostics to give access to a wealth of information on the
core and edge plasma and to support high performance operation of ITER.
For
example, Core and Edge Thomson scattering systems build detailed density and
temperature profiles on time scales much faster than τ
E
to follow transient
events; ECE and reflectometry add time resolution to follow MHD
events.
Implementing these diagnostics is challenging, needing a panoply of
technologies to keep them functioning reliably for thousands of hours despite
extreme events such as disruptions and wall conditioning cycles.
Shielding,
shutters and cleaning systems protect the forward elements of most optical
systems from the build-up of deposits and damage.
Still, plasma-facing mirrors
must survive laser loads and endure erosion, deposition and in-situ RF
cleaning.
Calibration and monitoring systems ensure accurate and drift-free
operation.
These support systems are also not straightforward and required
specific R&D.
Access also drives the design: to deal with the neutron
and gamma sources yet allow maintenance of activated components, ITER uses
large, multi-purpose ports that couple otherwise distinct systems into modules
for maintenance.
Machine movement requires provisions to maintain alignment and
calibration, from these port plugs, shown in figure 1, to the
accessible areas 10–50 m away.
A final complication comes from the difficulty of
employing electronics near the plugs.
Extensive qualification for radiation
resistance is needed.
This paper examines design adaptations that ITER adopted
for its near-reactor environment, consider the lessons learnt from the ITER
design activity specifically for laser and microwave systems and lays out some
possible evolution paths for the reactor diagnostician that must follow a more
industrial approach.
Related Results
Laser Spectrometric Techniques in Analytical Atomic Spectrometry
Laser Spectrometric Techniques in Analytical Atomic Spectrometry
Abstract
Laser light has a number of spectacular properties that make it useful for analytical spectrometry. One is that it has a high directionality (i.e. i...
LEO-to-GNSS Laser Interferometer for Space Geodesy with Laser DORIS and Laser SAR
LEO-to-GNSS Laser Interferometer for Space Geodesy with Laser DORIS and Laser SAR
In order to increase the accuracy of precise orbit determination for a single satellite or satellites in LEO formation, we propose using a LEO-to-GNSS laser interferometer, what we...
Chemical Kinetics of the Microwave Effect on the Base Hydrolysis Reaction Rate of Benzyl Isobutyrate
Chemical Kinetics of the Microwave Effect on the Base Hydrolysis Reaction Rate of Benzyl Isobutyrate
Many experimental results regarding Arrhenius plot on various chemical reactions under microwave irradiation have been reported. According to these results, it can be confirmed in ...
Comprehensive Comparison and Analysis for Fast Reactors
Comprehensive Comparison and Analysis for Fast Reactors
Abstract
Fast reactor is the main reactor type of the fourth generation reactors. It has the advantages of good fuel breeding characteristics, strong transmutation a...
Comparison of SOLPS5.0 and SOLPS‐ITER simulations for ASDEX upgrade L‐mode
Comparison of SOLPS5.0 and SOLPS‐ITER simulations for ASDEX upgrade L‐mode
AbstractThis paper examines the backward compatibility of SOLPS‐ITER with SOLPS5.0 and produces a basic test of the physics/numerics improvements/additions in SOLPS‐ITER recommende...
Double resonant sum-frequency generation in an external-cavity under high-efficiency frequency conversion
Double resonant sum-frequency generation in an external-cavity under high-efficiency frequency conversion
In recent years, more than 90% of the signal laser power can be up-converted based on the high-efficiency double resonant external cavity sum-frequency generation (SFG), especially...
Dual Laser Method for Experimentally Weathering Planetary Regoliths
Dual Laser Method for Experimentally Weathering Planetary Regoliths
<p>Experimental space weathering&#8212;whether laser, thermal reduction, impact, or ion based&#8212;is a critical endeavor to accurately interpret spa...
Laser‐Based Combustion Diagnostics*Update based on original article by Jürgen Wolfrum, Thomas Dreier, Volker Ebert, and Christof Schulz, Encyclopedia of Analytical Chemistry, ©2000, John Wiley & Sons Ltd.
Laser‐Based Combustion Diagnostics*Update based on original article by Jürgen Wolfrum, Thomas Dreier, Volker Ebert, and Christof Schulz, Encyclopedia of Analytical Chemistry, ©2000, John Wiley & Sons Ltd.
AbstractIn laser spectroscopy, the interaction of light emitted from various types of laser sources — tunable or nontunable in their output frequency — with the atomic or molecular...

