Effect of mismatch on Doppler backscattering in MAST and MAST-U plasmas

Fuente: arXiv
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Main Authors: Hall-Chen, Valerian H., Parra, Felix I., Hillesheim, Jon C., Ruiz, Juan Ruiz, Crocker, Neal A., Shi, Peng, Chu, Hong Son, Freethy, Simon J., Kogan, Lucy A., Peebles, William A., Pratt, Quinn T., Rhodes, Terry L., Ronald, Kevin, Scannell, Rory, Speirs, David C., Storment, Stephen, Trisno, Jonathan
Format: Preprint
Published: 2022
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author Hall-Chen, Valerian H.
Parra, Felix I.
Hillesheim, Jon C.
Ruiz, Juan Ruiz
Crocker, Neal A.
Shi, Peng
Chu, Hong Son
Freethy, Simon J.
Kogan, Lucy A.
Peebles, William A.
Pratt, Quinn T.
Rhodes, Terry L.
Ronald, Kevin
Scannell, Rory
Speirs, David C.
Storment, Stephen
Trisno, Jonathan
author_facet Hall-Chen, Valerian H.
Parra, Felix I.
Hillesheim, Jon C.
Ruiz, Juan Ruiz
Crocker, Neal A.
Shi, Peng
Chu, Hong Son
Freethy, Simon J.
Kogan, Lucy A.
Peebles, William A.
Pratt, Quinn T.
Rhodes, Terry L.
Ronald, Kevin
Scannell, Rory
Speirs, David C.
Storment, Stephen
Trisno, Jonathan
contents The Doppler backscattering (DBS) diagnostic, also referred to as Doppler reflectometry, measures turbulent density fluctuations of intermediate length scales. However, when the beam's wavevector is not properly aligned perpendicular to the magnetic field, the backscattered power is attenuated. In previous work, we used beam tracing and reciprocity to derive this mismatch attenuation quantitatively. In this paper, we applied our model, in the small but finite mismatch limit, to a several new cases. We compared our predictions with multiple O-mode channels for the first time. We then identified a $\sim 3^{\circ}$ error in the MAST Q-band's quasioptics, showing that our model is useful for commissioning DBS diagnostics. For both O- and X-mode, we compared experimental data with our model's predictions at multiple times during the shots, unlike our previous work, where only a single time was analysed. Finally, we analysed other contributions to the backscattered signal, evaluating how much they affect our measurements of mismatch attenuation, giving comparisons with data from both MAST and MAST-U. This paper's detailed study systematically validates and demonstrates the usefulness of our model for quantitatively interpreting DBS data from spherical tokamaks.
format Preprint
id arxiv_https___arxiv_org_abs_2211_17141
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Effect of mismatch on Doppler backscattering in MAST and MAST-U plasmas
Hall-Chen, Valerian H.
Parra, Felix I.
Hillesheim, Jon C.
Ruiz, Juan Ruiz
Crocker, Neal A.
Shi, Peng
Chu, Hong Son
Freethy, Simon J.
Kogan, Lucy A.
Peebles, William A.
Pratt, Quinn T.
Rhodes, Terry L.
Ronald, Kevin
Scannell, Rory
Speirs, David C.
Storment, Stephen
Trisno, Jonathan
Plasma Physics
The Doppler backscattering (DBS) diagnostic, also referred to as Doppler reflectometry, measures turbulent density fluctuations of intermediate length scales. However, when the beam's wavevector is not properly aligned perpendicular to the magnetic field, the backscattered power is attenuated. In previous work, we used beam tracing and reciprocity to derive this mismatch attenuation quantitatively. In this paper, we applied our model, in the small but finite mismatch limit, to a several new cases. We compared our predictions with multiple O-mode channels for the first time. We then identified a $\sim 3^{\circ}$ error in the MAST Q-band's quasioptics, showing that our model is useful for commissioning DBS diagnostics. For both O- and X-mode, we compared experimental data with our model's predictions at multiple times during the shots, unlike our previous work, where only a single time was analysed. Finally, we analysed other contributions to the backscattered signal, evaluating how much they affect our measurements of mismatch attenuation, giving comparisons with data from both MAST and MAST-U. This paper's detailed study systematically validates and demonstrates the usefulness of our model for quantitatively interpreting DBS data from spherical tokamaks.
title Effect of mismatch on Doppler backscattering in MAST and MAST-U plasmas
topic Plasma Physics
url https://arxiv.org/abs/2211.17141