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Current-driven magnetic domain-wall logic
by
Gambardella, Pietro
, Heyderman, Laura J.
, Mayr, Sina
, Raabe, Jörg
, Finizio, Simone
, Feng, Junxiao
, Sala, Giacomo
, Dao, Trong Phuong
, Luo, Zhaochu
, Hrabec, Aleš
in
142/126
/ 639/301/119/1001
/ 639/766/1130/2798
/ 639/766/119/1001
/ 639/925/927/1062
/ Analysis
/ Bias
/ Boolean
/ Boolean algebra
/ Circuits
/ Complementary metal oxide semiconductors
/ Domain structure
/ Domain walls
/ Gates
/ Humanities and Social Sciences
/ Logic
/ Logic circuits
/ Logic design
/ Magnetic domains
/ Magnetic fields
/ Magnetic properties
/ Magnetism
/ Microscopy
/ multidisciplinary
/ Racetracks
/ Science
/ Science (multidisciplinary)
/ Volatility
2020
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Current-driven magnetic domain-wall logic
by
Gambardella, Pietro
, Heyderman, Laura J.
, Mayr, Sina
, Raabe, Jörg
, Finizio, Simone
, Feng, Junxiao
, Sala, Giacomo
, Dao, Trong Phuong
, Luo, Zhaochu
, Hrabec, Aleš
in
142/126
/ 639/301/119/1001
/ 639/766/1130/2798
/ 639/766/119/1001
/ 639/925/927/1062
/ Analysis
/ Bias
/ Boolean
/ Boolean algebra
/ Circuits
/ Complementary metal oxide semiconductors
/ Domain structure
/ Domain walls
/ Gates
/ Humanities and Social Sciences
/ Logic
/ Logic circuits
/ Logic design
/ Magnetic domains
/ Magnetic fields
/ Magnetic properties
/ Magnetism
/ Microscopy
/ multidisciplinary
/ Racetracks
/ Science
/ Science (multidisciplinary)
/ Volatility
2020
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Current-driven magnetic domain-wall logic
by
Gambardella, Pietro
, Heyderman, Laura J.
, Mayr, Sina
, Raabe, Jörg
, Finizio, Simone
, Feng, Junxiao
, Sala, Giacomo
, Dao, Trong Phuong
, Luo, Zhaochu
, Hrabec, Aleš
in
142/126
/ 639/301/119/1001
/ 639/766/1130/2798
/ 639/766/119/1001
/ 639/925/927/1062
/ Analysis
/ Bias
/ Boolean
/ Boolean algebra
/ Circuits
/ Complementary metal oxide semiconductors
/ Domain structure
/ Domain walls
/ Gates
/ Humanities and Social Sciences
/ Logic
/ Logic circuits
/ Logic design
/ Magnetic domains
/ Magnetic fields
/ Magnetic properties
/ Magnetism
/ Microscopy
/ multidisciplinary
/ Racetracks
/ Science
/ Science (multidisciplinary)
/ Volatility
2020
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Journal Article
Current-driven magnetic domain-wall logic
2020
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Overview
Spin-based logic architectures provide nonvolatile data retention, near-zero leakage, and scalability, extending the technology roadmap beyond complementary metal–oxide–semiconductor logic
1
–
13
. Architectures based on magnetic domain walls take advantage of the fast motion, high density, non-volatility and flexible design of domain walls to process and store information
1
,
3
,
14
–
16
. Such schemes, however, rely on domain-wall manipulation and clocking using an external magnetic field, which limits their implementation in dense, large-scale chips. Here we demonstrate a method for performing all-electric logic operations and cascading using domain-wall racetracks. We exploit the chiral coupling between neighbouring magnetic domains induced by the interfacial Dzyaloshinskii–Moriya interaction
17
–
20
, which promotes non-collinear spin alignment, to realize a domain-wall inverter, the essential basic building block in all implementations of Boolean logic. We then fabricate reconfigurable NAND and NOR logic gates, and perform operations with current-induced domain-wall motion. Finally, we cascade several NAND gates to build XOR and full adder gates, demonstrating electrical control of magnetic data and device interconnection in logic circuits. Our work provides a viable platform for scalable all-electric magnetic logic, paving the way for memory-in-logic applications.
Chiral coupling between neighbouring magnetic domains is used in domain-wall racetracks to realize various all-electric logic operations by cascading the gates.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
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