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1194 results:

 
| Weiss, H; Kartsovnik, MV; Biberacher, W; Steep, E; Balthes, E; Jansen, AGM; Kushch, ND
 
 
| Weiss, H; Kartsovnik, MV; Biberacher, W; Steep, E; Jansen, AGM; Kushch, ND
 
 
| Balthes, E; Schweitzer, D; Heinen, I; Keller, HJ; Strunz, W; Biberacher, W; Jansen, AGM; Steep, E
 
 
| STADLOBER, B; KRUG, G; NEMETSCHEK, R; HACKL, R; COBB, JL; MARKERT, JT
 
 
| BALTHES, E; SCHWEITZER, D; HEINEN, I; KELLER, HJ; BIBERACHER, W; JANSEN, AGM; STEEP, E
 
 
| BALTHES, E; SCHWEITZER, D; HEINEN, I; KELLER, HJ; BIBERACHER, W; JANSEN, AGM; STEEP, E
 
 
| REITH, W; MULLER, P; ALLGEIER, C; HOBEN, R; HEISE, J; SCHILLING, JS; ANDRES, K
 
 
| SCHUBERTH, E; GUTSMIEDL, P; GROSS, F; ANDRES, K; BUCHER, E
 
 
| EINZEL, D; HIRSCHFELD, PJ; GROSS, F; CHANDRASEKHAR, BS; ANDRES, K; OTT, HR; BEUERS, J; FISK, Z; SMITH, JL
 
 
| STEWART, GR; OROURKE, J; CRABTREE, GW; CARLSON, KD; WANG, HH; WILLIAMS, JM; GROSS, F; ANDRES, K
 
 
| SCHWENK, H; HEIDMANN, CP; GROSS, F; HESS, E; ANDRES, K; SCHWEITZER, D; KELLER, HJ
 
 
| SCHWENK, H; HESS, E; ANDRES, K; WUDL, F; AHARONSHALOM, E
 
 
The layered molecular conductors κ-(BEDT-TTF)2X are a perfect experimental platform for studying the physics of the Mott transition and related exotic electronic states. In these materials, the
 
 
Most of solid-state spin physics arising from spin–orbit coupling, from fundamental phenomena to industrial applications, relies on symmetry-protected degeneracies. So does the Zeeman spin–orbit
 
 
| H. Weiss, M.V. Kartsovnik, W. Biberacher, E. Steep, E. Balthes, A.G.M. Jansen, K. Andres, and N.D. Kushch
 
 
We studied the electronic Raman spectra of (Li1−xFex)OHFeSe as a function of light polarization and temperature. In the B1g spectra alone we observe the redistribution of spectral weight expected for
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
 
Electrical transport in metals: - Boltzmann-equation, scattering processes - electrical and magnetic properties of metals - magnetoresistance and Hall-effect, anomalous Hall-effect - 2 spin-channel
 
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