Kondo hybridization in partially filled f-electron systems conveys significant amount of electronic states sharply near the Fermi energy leading to various instabilities from superconductivity to exotic electronic orders. UGe2 is a 5f heavy fermion system, where the Kondo hybridization is interrupted by the formation of two ferromagnetic phases below a 2nd order transition Tc ~ 52 K and a crossover transition Tx ~ 32 K. These two ferromagnetic phases are concomitantly related to a spin-triplet superconductivity that only emerges and persists inside the magnetically ordered phase at high pressure. The origin of the two ferromagnetic phases and how they form within a Kondo-lattice remain ambiguous. Using scanning tunneling microscopy and spec...
Despite of many efforts, we still lack a clear picture on how heavy electrons emerge and develop on ...
Heavy Fermion (HF) states emerge in correlated quantum materials due to the intriguing interplay bet...
The Mott insulator is found in the two-channel Kondo lattice by using the dynamical mean-field theor...
Kondo hybridization in partially filled f-electron systems conveys significant amount of electronic ...
Kondo hybridization in partially filled f-electron systems conveys significant amount of electronic ...
Novel electronic phenomena frequently form in heavy-fermions because of the mutual localized and iti...
It has been a great challenge to explore many-body effects in heavy fermion systems with $ab$-$initi...
The interaction among magnetic moments screened by conduction electrons drives quantum phase transit...
We have shown that the kink behavior in the spectral function of a heavy fermion can appear during t...
Spin triplet superconductivity in the Kondo lattice UTe2 appears to be associated with spin fluctuat...
For materials synthesized with f-electron elements, the interaction between f-electrons and conducti...
Considerable efforts have been made in recent years to theoretically understand quantum phase transi...
This article overviews the development of heavy-fermion superconductivity, notably in such rare-eart...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
Kondo lattices are a fascinating class of intermetallic compounds that contain certain rare earth el...
Despite of many efforts, we still lack a clear picture on how heavy electrons emerge and develop on ...
Heavy Fermion (HF) states emerge in correlated quantum materials due to the intriguing interplay bet...
The Mott insulator is found in the two-channel Kondo lattice by using the dynamical mean-field theor...
Kondo hybridization in partially filled f-electron systems conveys significant amount of electronic ...
Kondo hybridization in partially filled f-electron systems conveys significant amount of electronic ...
Novel electronic phenomena frequently form in heavy-fermions because of the mutual localized and iti...
It has been a great challenge to explore many-body effects in heavy fermion systems with $ab$-$initi...
The interaction among magnetic moments screened by conduction electrons drives quantum phase transit...
We have shown that the kink behavior in the spectral function of a heavy fermion can appear during t...
Spin triplet superconductivity in the Kondo lattice UTe2 appears to be associated with spin fluctuat...
For materials synthesized with f-electron elements, the interaction between f-electrons and conducti...
Considerable efforts have been made in recent years to theoretically understand quantum phase transi...
This article overviews the development of heavy-fermion superconductivity, notably in such rare-eart...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
Kondo lattices are a fascinating class of intermetallic compounds that contain certain rare earth el...
Despite of many efforts, we still lack a clear picture on how heavy electrons emerge and develop on ...
Heavy Fermion (HF) states emerge in correlated quantum materials due to the intriguing interplay bet...
The Mott insulator is found in the two-channel Kondo lattice by using the dynamical mean-field theor...