Electrical Detection of Magnetization Switching in Single-Molecule Magnets
Abstrak
Single-molecule magnets (SMMs) with chemically tailorable properties are potential building blocks for quantum computing, high-density magnetic memory, and spintronics.1 2 3,4 These applications require isolated or few molecules on substrates, but studies of SMMs have mainly focused on bulk crystals. Moreover, fabrication of SMM-based devices and electrical detection of the SMM magnetic state are still coveted milestones that have so far been achieved mainly for double-decker rare-earth phthalocyanines at temperatures below 1 K.5-8 Here we demonstrate electrical detection of magnetization switching for a modification of the archetypal SMM Mn12, up to 70 K, based on the supramolecular spin valve effect5 with graphene quantum dots9. Notably, the exchange interaction between the molecules and the graphene, as well as the dot-mediated intermolecular interaction, can be directly extracted from the electrical response, opening the way to an effective characterization of the quantum properties of different types of SMMs in a wide temperature range.
Topik & Kata Kunci
Penulis (15)
Amjad Alqahtani
DaVonne Henry
Lubomír Havlíček
Luke St. Marie
Jakub Hrubý
Antonín Sojka
Morgan Hale
Samuel Felsenfeld
Abdelouahad El Fatimy
Rachael L. Myers-Ward
D. Kurt Gaskill
Ivan Nemec
Petr Neugebauer
Amy Y. Liu
Paola Barbara
Akses Cepat
- Tahun Terbit
- 2024
- Bahasa
- en
- Sumber Database
- arXiv
- Akses
- Open Access ✓