Laser induced crystallization of Co-Fe-B films.


Journal

Scientific reports
ISSN: 2045-2322
Titre abrégé: Sci Rep
Pays: England
ID NLM: 101563288

Informations de publication

Date de publication:
08 Jul 2021
Historique:
received: 26 02 2021
accepted: 17 06 2021
entrez: 9 7 2021
pubmed: 10 7 2021
medline: 10 7 2021
Statut: epublish

Résumé

Local crystallization of ferromagnetic layers is crucial in the successful realization of miniaturized tunneling magnetoresistance (TMR) devices. In the case of Co-Fe-B TMR devices, used most successfully so far in applications and devices, Co-Fe-B layers are initially deposited in an amorphous state and annealed post-deposition to induce crystallization in Co-Fe, thereby increasing the device performance. In this work, first direct proof of locally triggered crystallization of 10 nm thick Co-Fe-B films by laser irradiation is provided by means of X-ray diffraction (XRD) using synchrotron radiation. A comparison with furnace annealing is performed for benchmarking purposes, covering different annealing parameters, including temperature and duration in the case of furnace annealing, as well as laser intensity and scanning speed for the laser annealing. Films of Co-Fe-B with different stoichiometry sandwiched between a Ru and a Ta or MgO layer were systematically assessed by XRD and SQUID magnetometry in order to elucidate the crystallization mechanisms. The transformation of Co-Fe-B films from amorphous to crystalline is revealed by the presence of pronounced CoFe(110) and/or CoFe(200) reflexes in the XRD θ-2θ scans, depending on the capping layer. For a certain window of parameters, comparable crystallization yields are obtained with furnace and laser annealing. Samples with an MgO capping layer required a slightly lower laser intensity to achieve equivalent Co-Fe crystallization yields, highlighting the potential of laser annealing to locally enhance the TMR ratio.

Identifiants

pubmed: 34238949
doi: 10.1038/s41598-021-93009-x
pii: 10.1038/s41598-021-93009-x
pmc: PMC8266803
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

14104

Subventions

Organisme : Deutsche Forschungsgemeinschaft
ID : 282193534
Organisme : European Regional Development Fund
ID : VP 3675
Organisme : European Regional Development Fund
ID : HZwo:FRAME VP2.2

Références

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pubmed: 15516928
Lab Chip. 2017 May 31;17(11):1884-1912
pubmed: 28485417
Sci Rep. 2019 Jul 2;9(1):9541
pubmed: 31266999

Auteurs

Maria Almeida (M)

Center for Microtechnologies, Chemnitz University of Technology, 09126, Chemnitz, Germany. maria.almeida@zfm.tu-chemnitz.de.
Center for Materials, Architectures and Integration of Nanomembranes, Chemnitz University of Technology, 09126, Chemnitz, Germany. maria.almeida@zfm.tu-chemnitz.de.

Apoorva Sharma (A)

Institute of Physics, Chemnitz University of Technology, 09126, Chemnitz, Germany.

Patrick Matthes (P)

Fraunhofer-Institute for Electronic Nano Systems, 09126, Chemnitz, Germany.

Nicole Köhler (N)

Center for Microtechnologies, Chemnitz University of Technology, 09126, Chemnitz, Germany.

Sandra Busse (S)

Laser Institut Hochschule Mittweida, University of Applied Sciences, 09648, Mittweida, Germany.

Matthias Müller (M)

Laser Institut Hochschule Mittweida, University of Applied Sciences, 09648, Mittweida, Germany.

Olav Hellwig (O)

Institute of Physics, Chemnitz University of Technology, 09126, Chemnitz, Germany.
Institute of Ion Beam Physics and Materials Research, Helmholtz-Zentrum Dresden-Rossendorf, 01328, Dresden, Germany.
Center for Materials, Architectures and Integration of Nanomembranes, Chemnitz University of Technology, 09126, Chemnitz, Germany.

Alexander Horn (A)

Laser Institut Hochschule Mittweida, University of Applied Sciences, 09648, Mittweida, Germany.

Dietrich R T Zahn (DRT)

Institute of Physics, Chemnitz University of Technology, 09126, Chemnitz, Germany.
Center for Materials, Architectures and Integration of Nanomembranes, Chemnitz University of Technology, 09126, Chemnitz, Germany.

Georgeta Salvan (G)

Institute of Physics, Chemnitz University of Technology, 09126, Chemnitz, Germany.
Center for Materials, Architectures and Integration of Nanomembranes, Chemnitz University of Technology, 09126, Chemnitz, Germany.

Stefan E Schulz (SE)

Center for Microtechnologies, Chemnitz University of Technology, 09126, Chemnitz, Germany.
Fraunhofer-Institute for Electronic Nano Systems, 09126, Chemnitz, Germany.
Center for Materials, Architectures and Integration of Nanomembranes, Chemnitz University of Technology, 09126, Chemnitz, Germany.

Classifications MeSH