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The model of singlet-correlated bands for temperature and doping dependences of Cu(2) Knight shift in bilayered cuprates of the planar Cu Knight shift in YBa2Cu3O7 and YBa2Cu4O8, at T > Tc, have been calculated. The spin

Light-emitting diodes fabricated from carbon ions implanted into p-type silicon

The knight’s armour description in the literature of the Middle AgesThe knight’s armour description in the literature of the Middle Ages

Knight shift in superconducting vanadiumThe Knight shift in metallic vanadium in the normal and superconducting states has been measured

Knight shift in superconducting vanadiumThe Knight shift in metallic vanadium in the normal and superconducting states has been measured

The model of singlet-correlated bands for temperature and doping dependences of Cu(2) Knight shift in bilayered cuprates of the planar Cu Knight shift in YBa2Cu3O7 and YBa2Cu4O8, at T > Tc, have been calculated. The spin

The spin susceptibility of singlet correlated oxygen band in La2-xSrxCuO4Knight shift

Temperature dependence of the spin susceptibility of layered cuprates in the pseudogap phase: Comparison with the knight shift data for the Cu(2) site in YBa2Cu4O8 and Bi2Sr 2CaCu2O8 + xThe temperature dependences of the Knight shift at the Cu(2) site in YBa2Cu4O8 and Bi2Sr 2CaCu2O8

Charge-excitation picture of Cu NMR Knight shift and relaxation in YBa2Cu4O8 deduced from a 3-band Hubbard model of the corresponding density of states we derive formulae for the spin-lattice relaxation time T1 and the Knight shift

Temperature dependence of the spin susceptibility of layered cuprates in the pseudogap phase: Comparison with the knight shift data for the Cu(2) site in YBa2Cu4O8 and Bi2Sr 2CaCu2O8 + xThe temperature dependences of the Knight shift at the Cu(2) site in YBa2Cu4O8 and Bi2Sr 2CaCu2O8

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