ESR bottleneck effect in the heavy-fermion metal YbRh$_2$Si$_2$
Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki, Kazanskii Gosudarstvennyi Universitet. Uchenye Zapiski. Seriya Fiziko-Matematichaskie Nauki, Tome 148 (2006) no. 3, pp. 74-79 Cet article a éte moissonné depuis la source Math-Net.Ru

Voir la notice du chapitre de livre

Possible exchange interactions which lead to the unusual narrowed electron spin resonance (ESR) linewidths of the Kondo ion Yb$^{3+}$ in the dense Kondo lattice systems YbRh$_2$Si$_2$ and YbIr$_2$Si$_2$ below 17 K are discussed. An approach related to the electron bottleneck effect is proposed as a possible mechanism of the ESR relaxation.
@article{UZKU_2006_148_3_a5,
     author = {V. A. Ivan'shin},
     title = {ESR bottleneck effect in the heavy-fermion metal {YbRh}$_2${Si}$_2$},
     journal = {U\v{c}\"enye zapiski Kazanskogo universiteta. Seri\^a Fiziko-matemati\v{c}eskie nauki},
     pages = {74--79},
     year = {2006},
     volume = {148},
     number = {3},
     language = {ru},
     url = {http://geodesic.mathdoc.fr/item/UZKU_2006_148_3_a5/}
}
TY  - JOUR
AU  - V. A. Ivan'shin
TI  - ESR bottleneck effect in the heavy-fermion metal YbRh$_2$Si$_2$
JO  - Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki
PY  - 2006
SP  - 74
EP  - 79
VL  - 148
IS  - 3
UR  - http://geodesic.mathdoc.fr/item/UZKU_2006_148_3_a5/
LA  - ru
ID  - UZKU_2006_148_3_a5
ER  - 
%0 Journal Article
%A V. A. Ivan'shin
%T ESR bottleneck effect in the heavy-fermion metal YbRh$_2$Si$_2$
%J Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki
%D 2006
%P 74-79
%V 148
%N 3
%U http://geodesic.mathdoc.fr/item/UZKU_2006_148_3_a5/
%G ru
%F UZKU_2006_148_3_a5
V. A. Ivan'shin. ESR bottleneck effect in the heavy-fermion metal YbRh$_2$Si$_2$. Učënye zapiski Kazanskogo universiteta. Seriâ Fiziko-matematičeskie nauki, Kazanskii Gosudarstvennyi Universitet. Uchenye Zapiski. Seriya Fiziko-Matematichaskie Nauki, Tome 148 (2006) no. 3, pp. 74-79. http://geodesic.mathdoc.fr/item/UZKU_2006_148_3_a5/

[1] Gegenwart P., Tokiwa J., Westerkamp T., Weickert F., Custers J., Ferstl J., Krellner C., Geibel C., Kerschl P., Müller K.-H., Steglich F., “High-field phase diagram of the heavy-fermion metal YbRh$_2$Si$_2$”, New J. Phys., 8 (2006), Art. 171 | DOI

[2] Steglich F., “From Kondo impurities to heavy-fermion superconductivity and quantum critical points”, Physica B, 378–380 (2006), 7–12 | DOI

[3] Krug von Nidda H.-A., Heinrich M., Loidl A., “Dynamic susceptibility in heavy-fermion systems and related materials, probed by electron spin resonance”, Relaxation Phenomena: Liquid Crystals, Magnetic Systems, Polymers, High-Tc Superconductors, Metallic Glasses, Chapt. 2.2., eds. W. Haase, S. Wrobel, Springer, Berlin, 2003

[4] Ivanshin V. A., Aminov L. K., Kurkin I. N., Zischelshmidt I., Shtokert O., Ferstl Yu., Gaibel K., “Elektronnyi paramagnitnyi rezonans ionov Yb$^{3+}$ v kontsentrirovannom soedinenii s tyazhelymi fermionami YbRh$_2$Si$_2$”, Pisma v ZhETF, 7 (2003), 625–628

[5] Sichelschmidt J., Ivanshin V. A., Ferstl J., Geibel C., Steglich F., “Low temperature electron spin resonance of the Kondo ion in a heavy-fermion metal: YbRh$_2$Si$_2$”, Phys. Rev. Lett., 91 (2003), 156401-1–156401-4 | DOI

[6] Ivanshin V. A., Zverev D. G., “ESR study of the undoped heavy-fermion compound YbRh$_2$Si$_2$”, Appl. Magn. Reson., 27 (2004), 87–91 | DOI

[7] von Spalden Y., Tsang E., Baberschke K., Schlottmann P., “ESR study of the Kondo effect in Au$^{171}$Yb and Au$^{174}$Yb”, Phys. Rev. B, 24 (1983), 24–28

[8] Continentino M. A., “Thermodynamic approach to obtaining a highly spin-polarized strongly correlated Fermi liquid”, Phys. Rev. B, 72 (2005), 113108-1–113108-4 | DOI

[9] Ivanshin V. A., Kurkin I. N., Leushin A. M., Aminov L. K., “Crystal electric field excitations in the non-Fermy liquid compound YbRh$_2$Si$_2$”, J. Supercond. and Nov. Magnetism, 20 (2007), 131–133 | DOI

[10] Stockert O., Koza M. M., Ferstl J., Murani A. P., Geibel C., Steglich F., “Crystalline electric field excitations of the non-Fermi-liquid YbRh$_2$Si$_2$”, Physica B, 378–380 (2006), 157–158 | DOI

[11] Norman M. R., “Hall number in YbRh$_2$Si$_2$”, Phys. Rev. B, 71 (2005), 220405(R)-1–220405(R)-4 | DOI | MR

[12] Jeong T., Picket W. E., “First-principles study of the electronic structure of heavy fermion YbRh$_2$Si$_2$”, J. Phys. C, 18 (2006), 6289–6297

[13] Danzenbächer S., Kucherenko Yu., Vyalikh D. V., Laubschat C., Hossain Z., Geibel C., Zhou X. J., Yang W. L., Mannella N., Hussain Z., Shen Z.-X., Molodtsov S. L., “Energy Dispersion of 4$f$-Derived Emissions in Photoelectron Spectra of the Heavy-Fermion Compound YbIr$_2$Si$_2$”, Phys. Rev. Lett., 96 (2006), Art. 106402 | DOI

[14] Sichelschmidt J., Hossain Z., Ferstl J., Geibel C., Steglich F., “Electron spin resonance of heavy fermion metals: probing the quantum critical regime”, Abst. of the Internat. Conf. “Nanoscale properties of condensed matter probed by resonance phenomena” (Kazan, Russia), Kazan, 2004, 46

[15] Mironov G. I., Ivanshin V. A., “Spin dynamics in YbRh$_2$Si$_2$ probed by ESR”, Physica B, 2005, 359–361

[16] Kaczmarska K., “ESR bottleneck effect in dilute Gd$_{1-x}$La$_x$T$_2$Si$_2$ (T=Cu,Ni) systems”, J. Alloys and Compd., 240 (1996), 88–95 | DOI

[17] Sichelschmidt J., Ferstl J., Geibel C., Steglich F., “Kondo ion electron spin resonance in YbRh$_2$(Si$_{1-x}$Ge$_x)_2$(x=0.05)”, Physica B, 359–361 (2005), 17–19 | DOI

[18] Wykhoff J., Sichelschmidt J., MaQuilon S., Pham L., Fisk Z., Krellner C., Ferstl J., Krug von Nidda H.-A., Geibel C., Steglich F., “How many Kondo-ions are seen by the electron spin resonance in Yb$_{1-x}$R$_x$Rh$_2$Si$_2$?”, Abst. of the DPG Spring Meeting (Dresden, German), Dresden, 2006, TT.25.81

[19] Wykhoff J., Sichelschmidt J., Ferstl J., Krellner C., Geibel C., Steglich F., Fazlishanov I., Krug von Nidda H.-A., “Electron spin resonance inYbRh$_2$Si$_2$: The role of the residual linewidth”, Physica C, submitted