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author Grubišić-Čabo, Antonija
Guimarães, Marcos H. D.
Afanasiev, Dmytro
Aguilar, Jose H. Garcia
Aguilera, Irene
Ali, Mazhar N.
Bhattacharyya, Semonti
Blanter, Yaroslav M.
Bosma, Rixt
Cheng, Zhiyuan
Dan, Zhiying
Dash, Saroj P.
Dueñas, Joaquín Medina
Fernandez-Rossier, Joaquín
Gibertini, Marco
Grytsiuk, Sergii
Houmes, Maurits J. A.
Isaeva, Anna
Knekna, Chrystalla
Kole, Arnold H.
Kurdi, Samer
Lado, Jose
Mañas-Valero, Samuel
Lopes, J. Marcelo J.
Marian, Damiano
Na, Mengxing
Pabst, Falk
Pierantoni, Sergio Barquero
Regout, Mexx
Reho, Riccardo
Rösner, Malte
Sanz, David
van der Sar, Toeno
Sławińska, Jagoda
Verstraete, Matthieu J.
Waseem, Muhammad
van der Zant, Herre S. J.
Zanolli, Zeila
Soriano, David
author_facet Grubišić-Čabo, Antonija
Guimarães, Marcos H. D.
Afanasiev, Dmytro
Aguilar, Jose H. Garcia
Aguilera, Irene
Ali, Mazhar N.
Bhattacharyya, Semonti
Blanter, Yaroslav M.
Bosma, Rixt
Cheng, Zhiyuan
Dan, Zhiying
Dash, Saroj P.
Dueñas, Joaquín Medina
Fernandez-Rossier, Joaquín
Gibertini, Marco
Grytsiuk, Sergii
Houmes, Maurits J. A.
Isaeva, Anna
Knekna, Chrystalla
Kole, Arnold H.
Kurdi, Samer
Lado, Jose
Mañas-Valero, Samuel
Lopes, J. Marcelo J.
Marian, Damiano
Na, Mengxing
Pabst, Falk
Pierantoni, Sergio Barquero
Regout, Mexx
Reho, Riccardo
Rösner, Malte
Sanz, David
van der Sar, Toeno
Sławińska, Jagoda
Verstraete, Matthieu J.
Waseem, Muhammad
van der Zant, Herre S. J.
Zanolli, Zeila
Soriano, David
contents Fundamental research on two-dimensional (2D) magnetic systems based on van der Waals materials has been gaining traction rapidly since their recent discovery. With the increase of recent knowledge, it has become clear that such materials have also a strong potential for applications in devices that combine magnetism with electronics, optics, and nanomechanics. Nonetheless, many challenges still lay ahead. Several fundamental aspects of 2D magnetic materials are still unknown or poorly understood, such as their often-complicated electronic structure, optical properties, and magnetization dynamics, and their magnon spectrum. To elucidate their properties and facilitate integration in devices, advanced characterization techniques and theoretical frameworks need to be developed or adapted. Moreover, developing synthesis methods which increase critical temperatures and achieve large-scale, high-quality homogeneous thin films is crucial before these materials can be used for real-world applications. Therefore, the field of 2D magnetic materials provides many challenges and opportunities for the discovery and exploration of new phenomena, as well as the development of new applications. This Roadmap presents the background, challenges, and potential research directions for various relevant topics in the field on the fundamentals, synthesis, characterization, and applications. We hope that this work can provide a strong starting point for young researchers in the field and provide a general overview of the key challenges for more experienced researchers.
format Preprint
id arxiv_https___arxiv_org_abs_2412_18020
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Roadmap on Quantum Magnetic Materials
Grubišić-Čabo, Antonija
Guimarães, Marcos H. D.
Afanasiev, Dmytro
Aguilar, Jose H. Garcia
Aguilera, Irene
Ali, Mazhar N.
Bhattacharyya, Semonti
Blanter, Yaroslav M.
Bosma, Rixt
Cheng, Zhiyuan
Dan, Zhiying
Dash, Saroj P.
Dueñas, Joaquín Medina
Fernandez-Rossier, Joaquín
Gibertini, Marco
Grytsiuk, Sergii
Houmes, Maurits J. A.
Isaeva, Anna
Knekna, Chrystalla
Kole, Arnold H.
Kurdi, Samer
Lado, Jose
Mañas-Valero, Samuel
Lopes, J. Marcelo J.
Marian, Damiano
Na, Mengxing
Pabst, Falk
Pierantoni, Sergio Barquero
Regout, Mexx
Reho, Riccardo
Rösner, Malte
Sanz, David
van der Sar, Toeno
Sławińska, Jagoda
Verstraete, Matthieu J.
Waseem, Muhammad
van der Zant, Herre S. J.
Zanolli, Zeila
Soriano, David
Materials Science
Mesoscale and Nanoscale Physics
Fundamental research on two-dimensional (2D) magnetic systems based on van der Waals materials has been gaining traction rapidly since their recent discovery. With the increase of recent knowledge, it has become clear that such materials have also a strong potential for applications in devices that combine magnetism with electronics, optics, and nanomechanics. Nonetheless, many challenges still lay ahead. Several fundamental aspects of 2D magnetic materials are still unknown or poorly understood, such as their often-complicated electronic structure, optical properties, and magnetization dynamics, and their magnon spectrum. To elucidate their properties and facilitate integration in devices, advanced characterization techniques and theoretical frameworks need to be developed or adapted. Moreover, developing synthesis methods which increase critical temperatures and achieve large-scale, high-quality homogeneous thin films is crucial before these materials can be used for real-world applications. Therefore, the field of 2D magnetic materials provides many challenges and opportunities for the discovery and exploration of new phenomena, as well as the development of new applications. This Roadmap presents the background, challenges, and potential research directions for various relevant topics in the field on the fundamentals, synthesis, characterization, and applications. We hope that this work can provide a strong starting point for young researchers in the field and provide a general overview of the key challenges for more experienced researchers.
title Roadmap on Quantum Magnetic Materials
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2412.18020