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  • Copy number changes (1)
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Mutational screening of newly diagnosed multiple myeloma patients by deep targeted sequencing (2018)
Ruiz-Heredia, Yanira ; Sánchez-Vega, Beatriz ; Onecha, Esther ; Barrio, Santiago ; Alonso, Rafael ; Carlos Martínez-Avila, Jose ; Cuenca, Isabel ; Agirre, Xabier ; Braggio, Esteban ; Hernández, Miguel-T. ; Martínez, Rafael ; Rosiñol, Laura ; Gutierrez, Norma ; Martin-Ramos, Marisa ; Ocio, Enrique M. ; Echeveste, María-Asunción ; Pérez de Oteyza, Jaime ; Oriol, Albert ; Bargay, Joan ; Gironella, Mercedes ; Ayala, Rosa ; Bladé, Joan ; Mateos, María-Victoria ; Kortum, Klaus M. ; Stewart, Keith ; García-Sanz, Ramón ; San Miguel, Jesús ; José Lahuerta, Juan ; Martinez-Lopez, Joaquín
no abstract available
Spin-polarized electron transmission in DNA-like systems (2019)
Sierra, Miguel A. ; Sánchez, David ; Gutierrez, Rafael ; Cuniberti, Gianaurelio ; Domínguez-Adame, Francisco ; Díaz, Elena
The helical distribution of the electronic density in chiral molecules, such as DNA and bacteriorhodopsin, has been suggested to induce a spin–orbit coupling interaction that may lead to the so-called chirality-induced spin selectivity (CISS) effect. Key ingredients for the theoretical modelling are, in this context, the helically shaped potential of the molecule and, concomitantly, a Rashba-like spin–orbit coupling due to the appearance of a magnetic field in the electron reference frame. Symmetries of these models clearly play a crucial role in explaining the observed effect, but a thorough analysis has been largely ignored in the literature. In this work, we present a study of these symmetries and how they can be exploited to enhance chiral-induced spin selectivity in helical molecular systems.
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