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10 May 2018

Magnetic Atoms on Superconductors Studied by Scanning Tunneling Microscope - STM

FMC Editor STM
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Recently, the introduction of new impurity states in the superconducting gap has received a lot of attention. Indeed, the search of a new superconducting state dubbed topological superconductivity is strongly based in the combination of doping classical (s-wave) superconductors with magnetic impurities that arrange in a chiral fashion.

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16 January 2018

Nanoscale Magnetic and Thermal Imaging in Quantum Systems

FMC Editor Seminars IFIMAC STM
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NanoSQUIDs residing on the apex of a quartz tip (SOT), suitable for scanning probe microscopy with record size, spin sensitivity, and thermal sensitivity are presented.

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06 November 2017

Pair Correlation Function of a 2D Molecular Gas Directly Visualized by Scanning Tunneling Microscopy

FMC Editor Seminars IFIMAC Molecular Electronics, STM
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The state of matter in fluid phases, determined by the interactions between particles, can be characterized by a pair correlation function (PCF).

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17 February 2016

Spin Polarization and Molecular Chirality in STM Junctions

FMC Editor Seminars IFIMAC Molecular Electronics, STM
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Electron spin polarization is usually associated to the presence of external fields or magnetic interfaces. However, Chiral-Induced Spin Selectivity (CISS) refers to a symmetry-breaking effect whereby chiral molecules are capable of filtering an electronic spin component.

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Exciton Transport in 2D Perovskites: Visualising the Flow of Energy in a Soft Semiconductor

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Light in the Tunnel

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Interfacial Spin-Orbit Coupling: A Platform for Superconducting Spintronics

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IFIMAC Seminars

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Non Equilibrium Internal Forces in Brownian Systems

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Liquid Crystals of Colloidal Nanoplates

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Driving Liquid Crystal Polymer Films to “dance” in Electric Fields

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Visualization of Spatial Modulation and Persistent Response States of Strongly-driven Membrane Resonators

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Heavy, heavier, the softest - Heavy Electrons to Explore Correlated Quantum Matter

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When Light Goes Small

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PhD Position on Thermoelectric Effects in Single-Molecule Devices

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Postdoctoral Position on Thermoelectric Effects in Single-Molecule Devices

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administracion.fmc@uam.es (+34) 91 497 4740 @fmcatuam Faculty of Science, E-28049 Madrid, Spain.
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The Department originated from the Physics Department created by Prof. Nicolás Cabrera in the early 1970s. It currently conducts intense research in numerous fields of Condensed Matter Physics and Biophysics. Energy, transport, nanotechnology, health and environment, information and communication technologies are the key technologies of the twenty-first century. Condensed Matter Physics provides the methods to engineer and develop new ideas in most of these technologies. Using advanced instrumentation, such as state-of-the-art microscopy, spectroscopy, and calculation techniques, we can control and directly observe fascinating phenomena belonging to the challenges of technical development.


Physics at UAM - World Rankings

ShanghaiRanking's Global Ranking of Academic Subjects 2017 - Physics: #51-75

ShanghaiRanking's Global Ranking of Academic Subjects 2017

Nature Index 2017 - reflecting the quality of scientific research: #58

Nature Index 2017

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