Magnetic cooling
Pokroky matematiky, fyziky a astronomie (2005)
- Volume: 50, Issue: 4, page 301-320
- ISSN: 0032-2423
Access Full Article
topHow to cite
topBlažková, Michaela. "Magnetické chlazení." Pokroky matematiky, fyziky a astronomie 50.4 (2005): 301-320. <http://eudml.org/doc/196791>.
@article{Blažková2005,
author = {Blažková, Michaela},
journal = {Pokroky matematiky, fyziky a astronomie},
language = {cze},
number = {4},
pages = {301-320},
publisher = {Jednota českých matematiků a fyziků Union of Czech Mathematicians and Physicists},
title = {Magnetické chlazení},
url = {http://eudml.org/doc/196791},
volume = {50},
year = {2005},
}
TY - JOUR
AU - Blažková, Michaela
TI - Magnetické chlazení
JO - Pokroky matematiky, fyziky a astronomie
PY - 2005
PB - Jednota českých matematiků a fyziků Union of Czech Mathematicians and Physicists
VL - 50
IS - 4
SP - 301
EP - 320
LA - cze
UR - http://eudml.org/doc/196791
ER -
References
top- Jánoš, Š., Fyzika nízkych teplôt, Alfa, Bratislava 1980, 180–194. (1980)
- Pobell, F., Matter and Methods at low Temperatures, Springer, Berlin 1992, 148–186. (1992)
- Rotter, M., Fyzikální základy a technika nízkoteplotního experimentu, SPN, Praha 1982, 143–155. (1982)
- Bromiley, P. A., Development of an Adiabatic Demagnetisation Refrigerator for use in Space, Ph. D. Thesis, University of London 1999; http://www.niac.man.ac.uk/~pab/pubs/phd.html (1999)
- Kashani, A., Helvensteijn, B. P. M., McCormack, F. J., Spivak, A. L., Performance of a Magnetic Refrigerator Operating Between 2 K and 10 K, Adv. Cryog. Eng. 41 (1996), 1313; http://irtek.arc.nasa.gov/CryoGroup/archive/AK_CEC95.word (1996)
- Kashani, A., Helvensteijn, B. P. M., McCormack, F. J., Methods of Improving the Transfer of Heat across the Cooper and Gadolinium Gallium Garnet Interface, Adv. Cryog. Eng. 43 (1994), 1303; http://irtek.arc.nasa.gov/CryoGroup/archive/BH_CEC93.word (1994)
- Odehnal, M., Supravodivost a jiné kvantové jevy, Academia, Praha 1992, 73–87. (1992)
- Lounasmaa, O. V., Towards to absolute zero, http://boojum.hut.fi/research/magnetism/zero.html
- Pecharsky, V. K., Gschneider, K. A. Jr., Some common misconceptions concerning magnetic refrigerant materials, J. Appl. Phys. 90, 9 (2001), 4614. (2001)
- Pecharsky, V. K., Gschneider, K. A. Jr., Magnetocaloric effect and magnetic refrigeration, JMMM 200 (1999) 44–56. (1999)
- Yu, B. F., Gao, Q., Zhang, B., Meng, X. Z., Chen, Z., Review on research of room temperature magnetic refrigeration, Int. J. Refr. 26 (2003), 622–636. (2003)
- Gschneider, K. A. Jr., Pecharsky, V. K., Magnetic refrigeration materials (invited), J. Appl. Phys. 85 (1999), 5365. (1999)
- Tegus, O., Brück, E., Buschow, K. H. J., De Boer, F. R., Transition-metal-based magnetic refrigerants for room-temperature applications, Nature 415 (2002), 150. (2002)
- Brück, E., Tegus, O., Zhang, L., Li, X. W., De Boer, F. R., Buschow, K. H. J., Magnetic refrigeration near room temperature with FeP-based compounds, J. Alloys Comp. 383 (2004), 32. (2004)
- Fujita, A., Fujieda, S., Hasegawa, Y., Fukamichi, K., Itinerant-electron metamagnetic transition and large magnetocaloric effects in LaFeSi compounds and their hybrides, Phys. Rev. B 67 (2003), 104416. (2003)
- Brown, G. V., Magnetic heat pumping near room temperature, J. Appl. Phys. 47, 8 (1976), 3673. (1976)
- Zimm, C., Jastrab, A., Sternberg, A., Pecharsky, V. K., Gschneider, K. A. Jr., Osborne, M., Anderson, I., Description and performance of a near-room temperature magnetic refrigerator, Adv. Cryo. Eng. 43 (1998), 1759–1766. (1998)
- Weiss, P., Magnetic refrigerator gets down and homey, http://www.sciencenews.org/20020105/fob2.asp
- Lee, S. J., Kenkel, J. M., Pecharsky, V. K., Jiles, D. C., Permanent magnet array for the magnetic refrigerator, J. Appl. Phys. 91, 10 (2002), 8894–8896. (2002)
- [unknown], http://www.Jarn.co.jp/News/2003_Q2/30520 _Chubu_Magnet_cool.html (2003) Zbl1200.20034
NotesEmbed ?
topTo embed these notes on your page include the following JavaScript code on your page where you want the notes to appear.