STM and Spectroscopy of Correlated 2D Materials
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Tag: MBE

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Metastable Polymorphic Phases in Monolayer TaTe2

Metastable Polymorphic Phases in Monolayer TaTe2

Polymorphic phases and collective phenomena – such as charge density waves (CDWs) – in…
Articles | 8 April 2023

Recent Articles

  • Emergent Magnetic Structures at the 2D Limit of the Altermagnet MnTe

  • Observation of the Charge Density Wave Excitonic Order Parameter in Topological Insulator Monolayer WTe2

  • Reversal of charge transfer doping on the negative electronic compressibility surface of MoS2

  • Electron delocalization in a 2D Mott insulator

  • Unveiling the Interlayer Interaction in a1H/1T-TaS2 van der Waals Heterostructure

  • Probing the Phase Transition to a Coherent 2D Kondo Lattice

Research Highlights

  • Emergent Magnetic Structures at the 2D Limit of the Altermagnet MnTe

  • Observation of the Charge Density Wave Excitonic Order Parameter in Topological Insulator Monolayer WTe2

  • Reversal of charge transfer doping on the negative electronic compressibility surface of MoS2

  • Electron delocalization in a 2D Mott insulator

  • Unveiling the Interlayer Interaction in a1H/1T-TaS2 van der Waals Heterostructure

  • Probing the Phase Transition to a Coherent 2D Kondo Lattice

Job Opportunities

  • Do you want to work with us?

About Us

Our group is devoted to studying the properties of two-dimensional materials and their emergent physical and chemical properties. To this end, we employ a combination of advanced experimental techniques, including:

• Low-temperature scanning tunneling microscopy and spectroscopy (LT-STM/STS)

• Thin-film growth by molecular beam epitaxy (MBE) under ultra-high vacuum (UHV) conditions

• Angle-resolved photoemission spectroscopy (ARPES) and X-ray photoemission spectroscopy (XPS) measurements conducted at leading synchrotron facilities

Most Popular

  • Do you want to work with us?Do you want to work with us?
  • Unveiling the Interlayer Interaction in a1H/1T-TaS2 van der Waals HeterostructureUnveiling the Interlayer Interaction in a1H/1T-TaS2 van der Waals Heterostructure
  • Observation of the Charge Density Wave Excitonic Order Parameter in Topological Insulator Monolayer WTe2Observation of the Charge Density Wave Excitonic Order Parameter in Topological Insulator Monolayer WTe2
  • Probing the Phase Transition to a Coherent 2D Kondo LatticeProbing the Phase Transition to a Coherent 2D Kondo Lattice
  • Efficient photogeneration of nonacene on nanostructured grapheneEfficient photogeneration of nonacene on nanostructured graphene
  • Metastable Polymorphic Phases in Monolayer TaTe2Metastable Polymorphic Phases in Monolayer TaTe2
  • Electron delocalization in a 2D Mott insulatorElectron delocalization in a 2D Mott insulator
  • Emergent Magnetic Structures at the 2D Limit of the Altermagnet MnTeEmergent Magnetic Structures at the 2D Limit of the Altermagnet MnTe
  • Reversal of charge transfer doping on the negative electronic compressibility surface of MoS2Reversal of charge transfer doping on the negative electronic compressibility surface of MoS2

Tag Cloud

altermagnet ARPES charge density wave delocalization edge state excitonic order parameter graphene heavy fermions interlayer interaction Job Opportunities MBE MnTe molecules on graphene monolyer tungsten ditelluride Mott insulator negative electronic compressibility photogeneration strong correlation Tantalum disulfide TMDs topological excitonic insultor van der Waals heterostructure

Contact

E-mail: al.vazquezdeparga@uam.es & iolanda.dibernardo@uam.es
Phone: +34 91 497 5517
Mailing Address: Departamento de Física de la Materia Condensada, Facultad de Ciencias, Calle Francisco Tomás y Valiente, 7, Universidad Autónoma de Madrid, Cantoblanco, 28049, Madrid, Spain.

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