In s-wave superconductors the Cooper pair wave function is isotropic in momentum space. This property may also be expected for Cooper pairs entering a normal metal from a superconductor due to the proximity effect. We show, however, that such a deduction is incorrect and the pairing function in a normal metal is surprisingly anisotropic because of quasiparticle interference. We calculate angle-resolved quasiparticle density of states in NS bilayers which reflects such anisotropic shape of the pairing function. We also propose a magnetotunneling spectroscopy experiment which could confirm our prediction
We suggest a straightforward and unambiguous test to identify possible opposite signs of the superco...
The Nambu spinor Green's function approach is applied to calculating the density of states (DOS) and...
We theoretically study the local density of states in superconducting proximity structures where two...
In s-wave superconductors the Cooper pair wave function is isotropic in momentum space. This propert...
The present study investigates the behavior of the Cooper pair wave function in a normal metal (NM) ...
We study the local density of states in a half metal sandwiched by the two superconductors. The spin...
We present a general theory of the proximity effect in junctions between diffusive normal metals (DN...
We describe the superconducting proximity effect taking place in a contact between a noncentrosymmet...
We investigate the mutual proximity effect in a normal metal contacted to a superconductor through a...
We study the proximity-induced superconducting correlations in a normal metal connected to a superco...
We derive a boundary condition for the Nambu Keldysh Green's function in diffusive normal metal-unco...
We derive a boundary condition for the Nambu Keldysh Green's function in diffusive normal metal / un...
We theoretically study the induced odd-frequency pairing states in ballistic normal-metal/supercondu...
The Nambu spinor Green's function approach is applied to calculating the density of states (DOS) and...
Anomalous features of the proximity effect specific to diffusive normal metal (DN) / triplet superco...
We suggest a straightforward and unambiguous test to identify possible opposite signs of the superco...
The Nambu spinor Green's function approach is applied to calculating the density of states (DOS) and...
We theoretically study the local density of states in superconducting proximity structures where two...
In s-wave superconductors the Cooper pair wave function is isotropic in momentum space. This propert...
The present study investigates the behavior of the Cooper pair wave function in a normal metal (NM) ...
We study the local density of states in a half metal sandwiched by the two superconductors. The spin...
We present a general theory of the proximity effect in junctions between diffusive normal metals (DN...
We describe the superconducting proximity effect taking place in a contact between a noncentrosymmet...
We investigate the mutual proximity effect in a normal metal contacted to a superconductor through a...
We study the proximity-induced superconducting correlations in a normal metal connected to a superco...
We derive a boundary condition for the Nambu Keldysh Green's function in diffusive normal metal-unco...
We derive a boundary condition for the Nambu Keldysh Green's function in diffusive normal metal / un...
We theoretically study the induced odd-frequency pairing states in ballistic normal-metal/supercondu...
The Nambu spinor Green's function approach is applied to calculating the density of states (DOS) and...
Anomalous features of the proximity effect specific to diffusive normal metal (DN) / triplet superco...
We suggest a straightforward and unambiguous test to identify possible opposite signs of the superco...
The Nambu spinor Green's function approach is applied to calculating the density of states (DOS) and...
We theoretically study the local density of states in superconducting proximity structures where two...