We investigate the electronic structure of an antiferromagnetic Kondo lattice system CeAgAs$_2$ employing hard x-ray photoemission spectroscopy. CeAgAs$_2$, an orthorhombic variant of HfCuSi$_2$ structure, exhibits antiferromagnetic ground state, Kondo like resistivity upturn and compensation of magnetic moments at low temperatures. The photoemission spectra obtained at different photon energies suggest termination of the cleaved surface at cis-trans-As layers. The depth-resolved data show significant surface-bulk differences in the As and Ce core level spectra. The As 2p bulk spectrum shows distinct two peaks corresponding to two different As layers. The peak at higher binding energy correspond to cis-trans-As layers and is weakly hybridiz...
The temperature-dependent evolution of the Kondo lattice is a long-standing topic of theoretical and...
The f-driven temperature scales at the surfaces of strongly correlated materials have increasingly c...
The f-driven temperature scales at the surfaces of strongly correlated materials have increasingly c...
We study the electronic properties of a Ce-based Kondo material, CeCuAs$_2$ employing high-resolutio...
We investigate the electronic structure of a Kondo lattice system, CeCuSb$_2$ exhibiting significant...
International audienceThe hybridization between localized 4f electrons and itinerant electrons in ra...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
International audienceThe hybridization between localized 4f electrons and itinerant electrons in ra...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
Ultra-violet angle-resolved photoemission spectroscopy (UV-ARPES) was used to explore the temperatur...
Ultra-violet angle-resolved photoemission spectroscopy (UV-ARPES) was used to explore the temperatur...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
Ultra-violet angle-resolved photoemission spectroscopy (UV-ARPES) was used to explore the temperatur...
Ce<SUB>2</SUB>CoSi<SUB>3</SUB> is a Kondo lattice compound possessing non-magnetic ground state and ...
The temperature-dependent evolution of the Kondo lattice is a long-standing topic of theoretical and...
The temperature-dependent evolution of the Kondo lattice is a long-standing topic of theoretical and...
The f-driven temperature scales at the surfaces of strongly correlated materials have increasingly c...
The f-driven temperature scales at the surfaces of strongly correlated materials have increasingly c...
We study the electronic properties of a Ce-based Kondo material, CeCuAs$_2$ employing high-resolutio...
We investigate the electronic structure of a Kondo lattice system, CeCuSb$_2$ exhibiting significant...
International audienceThe hybridization between localized 4f electrons and itinerant electrons in ra...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
International audienceThe hybridization between localized 4f electrons and itinerant electrons in ra...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
Ultra-violet angle-resolved photoemission spectroscopy (UV-ARPES) was used to explore the temperatur...
Ultra-violet angle-resolved photoemission spectroscopy (UV-ARPES) was used to explore the temperatur...
The hybridization between localized 4f electrons and itinerant electrons in rare-earth-based materia...
Ultra-violet angle-resolved photoemission spectroscopy (UV-ARPES) was used to explore the temperatur...
Ce<SUB>2</SUB>CoSi<SUB>3</SUB> is a Kondo lattice compound possessing non-magnetic ground state and ...
The temperature-dependent evolution of the Kondo lattice is a long-standing topic of theoretical and...
The temperature-dependent evolution of the Kondo lattice is a long-standing topic of theoretical and...
The f-driven temperature scales at the surfaces of strongly correlated materials have increasingly c...
The f-driven temperature scales at the surfaces of strongly correlated materials have increasingly c...