Spontaneous magnetic fields in compressed plasma of termonuclear laser target
Matematičeskoe modelirovanie, Tome 23 (2011) no. 9, pp. 148-160.

Voir la notice de l'article provenant de la source Math-Net.Ru

We have developed the model of SMF generation in laser thermonuclear targets. The cryogenic target design with gain is lager then one has been considered. Magnetic field an order of 10–100 MG has been generated in compressed DT plasma. We have discussed the opportunity of magnetic field observation in such plasma.
Keywords: laser fusion target, spontaneous magnetic field generation, mathematical modeling.
@article{MM_2011_23_9_a10,
     author = {P. V. Konash and I. G. Lebo},
     title = {Spontaneous magnetic fields in compressed plasma of termonuclear laser target},
     journal = {Matemati\v{c}eskoe modelirovanie},
     pages = {148--160},
     publisher = {mathdoc},
     volume = {23},
     number = {9},
     year = {2011},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/MM_2011_23_9_a10/}
}
TY  - JOUR
AU  - P. V. Konash
AU  - I. G. Lebo
TI  - Spontaneous magnetic fields in compressed plasma of termonuclear laser target
JO  - Matematičeskoe modelirovanie
PY  - 2011
SP  - 148
EP  - 160
VL  - 23
IS  - 9
PB  - mathdoc
UR  - http://geodesic.mathdoc.fr/item/MM_2011_23_9_a10/
LA  - ru
ID  - MM_2011_23_9_a10
ER  - 
%0 Journal Article
%A P. V. Konash
%A I. G. Lebo
%T Spontaneous magnetic fields in compressed plasma of termonuclear laser target
%J Matematičeskoe modelirovanie
%D 2011
%P 148-160
%V 23
%N 9
%I mathdoc
%U http://geodesic.mathdoc.fr/item/MM_2011_23_9_a10/
%G ru
%F MM_2011_23_9_a10
P. V. Konash; I. G. Lebo. Spontaneous magnetic fields in compressed plasma of termonuclear laser target. Matematičeskoe modelirovanie, Tome 23 (2011) no. 9, pp. 148-160. http://geodesic.mathdoc.fr/item/MM_2011_23_9_a10/

[1] Korobkin V. V., Serov R. V., Pisma v ZhETF, 4 (1966), 103

[2] Askaryan G. A., Rabinovich M. S., Smirnova A. D., Studenov V. B., Pisma v ZhETF, 4 (1967), 116

[3] Tidman D. A., Shanny R. A., Phys. Fluids, 17 (1974), 1207 | DOI

[4] Bolshov L. A. i dr., “O samoproizvolnom zamagnichivanii elektronnoi teploprovodnosti v lazernoi plazme”, Pisma v ZhETF, 19:5 (1974), 288–291

[5] Alterkop B. A. i dr., “K teorii magnitnoi neustoichivosti lazernoi plazmy”, Pisma v ZhETF, 19:5 (1974), 291–294

[6] Nastoyaschii A. F., Atomnaya energiya, 38 (1975), 27

[7] Stamper J. A., Papadopoulos K., Sudan R. N. et al., Phys. Fluids, 26 (1971), 1012

[8] Craxton R. S., Haines G., Phys. Rev. Letters, 35 (1975), 1336 | DOI

[9] Colombant D. G., Winsor N. K., Phys. Rev. Letters, 38 (1977), 1336 | DOI

[10] Afanasev Yu. V., Gamalii E. G., Lebo I. G., Rozanov V. B., ZhETF, 74 (1978), 516

[11] Bolshov L. A., Dreizin Yu. A., Dykhne A. M. i dr., ZhETF, 77 (1979), 2289

[12] Abdullaev A. Sh., Aliev Yu. M., Bychenkov V. Yu., Pisma v ZhETF, 28 (1978), 524

[13] Woo W., DeGrout J. S., Phys. Fluids, 21 (1978), 207

[14] Stamper J. A. et al., “Studies of Spontaneus Magnetic Fields in Laser – produced Plasmas by Faraday Rotation”, Phys. Rev. Letters, 40 (1978), 1177–1181 | DOI

[15] Raven A., Willi O., Rumsby P. T., Phys. Rev. Letters, 41 (1978), 554 | DOI

[16] Bunkin F. V., Kasyanov Yu. S., Korobkin V. V., Motylev S. L., Kvantovaya elektronika, 10 (1983), 2149–2151

[17] Basov N. G., Volovski E., Gamalii E. G. i dr., Pisma v ZhETF, 45 (1987), 173–176

[18] Lebo I. G., Spontannye magnitnye polya v sfericheskikh lazernykh mishenyakh, preprint No 64, FIAN, M., 1982

[19] Kotelnikov S. S., Lebo I. G., Rozanov V. B., Kratkie soobscheniya po fizike. FIAN, 1983, no. 1, 3

[20] Kotelnikov S. S., Lebo I. G., Rozanov V. B., Kratkie soobscheniya po fizike. FIAN, 1986, no. 1, 58

[21] Lebo I. G., Konash P. V., “Raschety kinetiki zaryazhennykh chastits v magnitnykh polyakh termoyadernykh lazernykh mishenei”, Matematicheskoe modelirovanie, 17:10 (2005), 3–13 | Zbl

[22] Konash P. V., Lebo I. G., “Modelirovanie rasseyaniya puchka elektronov na spontannykh magnitnykh polyakh v lazernoi plazme”, Kvantovaya elektronika, 36:8 (2006), 767

[23] Moses Edward I., “Ignition on the National Ignition Facility: a path towards internal fusion energy”, Nusl. Fusion, 49 (2009), 104022, 9 pp. | DOI

[24] Lebo I., “On a new approach to the experimental study of hydrodynamic instability development in compressed laser targets”, The 5-th International Conference on Inertial Fusion Sciences and Applications (IFSA2007), IOP Publishing, Journal of Physics: Conference Series, 112, 2008, 022018 | DOI

[25] Guskov S. Yu., Lebo I. G., Rozanov V. B., Trebuleva L. Yu., “O vliyanii spontannykh magnitnykh polei na energiyu, ostavlyaemuyu zaryazhennymi termoyadernymi chastitsami v lazernykh mishenyakh”, Fizika plazmy, 11:66 (1985), 674–683

[26] Lebo I. G., Popov I. V., Rozanov V. B., Tishkin V. F., “2D numerical modeling of laser targets heating and compression”, J. Russian Laser Research, 15 (1994), 136–143 | DOI

[27] Lebo I. G., Tishkin V. F., Issledovanie gidrodinamicheskoi neustoichivosti v zadachakh lazernogo termoyadernogo sinteza, FIZMATLIT, M., 2006

[28] Kozlov B. N., “Skorosti termoyadernykh reaktsii”, Atomnaya energiya, 12 (1962), 238