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Title: Facility for low-temperature spin-polarized-scanning tunneling microscopy studies of magnetic/spintronic materials prepared in situ by nitride molecular beam epitaxy

Journal Article · · Review of Scientific Instruments
DOI:https://doi.org/10.1063/1.4870276· OSTI ID:1684916

Based on the interest in, as well as exciting outlook for, nitride semiconductor based structures with regard to electronic, optoelectronic, and spintronic applications, it is compelling to investigate these systems using the powerful technique of spin-polarized scanning tunneling microscopy, a technique capable of achieving magnetic resolution down to the atomic scale. However, the delicate surfaces of these materials are easily corrupted by in-air transfers, making it unfeasible to study them in stand-alone ultra-high vacuum STM facilities. Therefore, we have carried out the development of a hybrid system including a nitrogen plasma assisted molecular beam epitaxy/pulsed laser epitaxy facility for sample growth combined with a low-temperature, spin-polarized scanning tunneling microscope system. The custom-designed molecular beam epitaxy growth system supports up to eight sources, including up to seven effusion cells plus a radio frequency nitrogen plasma source, for epitaxially growing a variety of materials, such as nitride semiconductors, magnetic materials, and their hetero-structures, and also incorporating in-situ reflection high energy electron diffraction. The growth system also enables integration of pulsed laser epitaxy. The STM unit has a modular design, consisting of an upper body and a lower body. The upper body contains the coarse approach mechanism and the scanner unit, while the lower body accepts molecular beam epitaxy grown samples using compression springs and sample skis. The design of the system employs two stages of vibration isolation as well as a layer of acoustic noise isolation in order to reduce noise during STM measurements. This isolation allows the system to effectively acquire STM data in a typical lab space, which during its construction had no special and highly costly elements included (such as isolated slabs) which would lower the environmental noise. The design further enables tip exchange and tip coating without breaking vacuum, and convenient visual access to the sample and tip inside a superconducting magnet cryostat. A sample/tip handling system is optimized for both the molecular beam epitaxy growth system and the scanning tunneling microscope system. The sample/tip handing system enables in-situ STM studies on epitaxially grown samples, and tip exchange in the superconducting magnet cryostat. Finally, the hybrid molecular beam epitaxy and low temperature scanning tunneling microscopy system is capable of growing semiconductor-based hetero-structures with controlled accuracy down to a single atomic-layer and imaging them down to atomic resolution.

Research Organization:
Ohio Univ., Athens, OH (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES); National Science Foundation (NSF); US Department of the Navy, Office of Naval Research (ONR)
Grant/Contract Number:
FG02-06ER46317; N00014-05-1-0418
OSTI ID:
1684916
Report Number(s):
DOE-OHIO-46317-74; TRN: US2204086
Journal Information:
Review of Scientific Instruments, Vol. 85, Issue 4; ISSN 0034-6748
Publisher:
American Institute of Physics (AIP)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 8 works
Citation information provided by
Web of Science

References (39)

A low-loss, ultrahigh vacuum compatible helium cryostat without liquid nitrogen shield journal January 2001
Compact scanning tunneling microscope for spin polarization measurements journal October 2012
Magnetic and transport characteristics on high Curie temperature ferromagnet of Mn-doped GaN journal January 2002
A variable-temperature scanning tunneling microscope capable of single-molecule vibrational spectroscopy journal January 1999
Observation of vacuum tunneling of spin-polarized electrons with the scanning tunneling microscope journal July 1990
Invited Review Article: A 10 mK scanning probe microscopy facility journal December 2010
Deciphering the atomic structure of a complex Sr/Ge (100) phase via scanning tunneling microscopy and first-principles calculations journal May 2012
Direct Observation of Nodes and Twofold Symmetry in FeSe Superconductor journal June 2011
Visualizing Critical Correlations Near the Metal-Insulator Transition in Ga1-xMnxAs journal February 2010
Buckled Silicene Formation on Ir(111) journal January 2013
Local Electronic Structure near Mn Acceptors in InAs: Surface-Induced Symmetry Breaking and Coupling to Host States journal October 2007
Low-temperature ultra-high-vacuum scanning tunneling microscope journal July 1992
A low-temperature high resolution scanning tunneling microscope with a three-dimensional magnetic vector field operating in ultrahigh vacuum journal May 2009
Coupling scanning tunneling microscope and supersonic molecular beams: A unique tool for in situ investigation of the morphology of activated systems journal September 2012
A variable-temperature ultrahigh vacuum scanning tunneling microscope journal June 2001
Design, operation, and housing of an ultrastable, low temperature, ultrahigh vacuum scanning tunneling microscope journal July 1998
Colossal Magnetic Moment of Gd in GaN journal January 2005
Atomic structure of postgrowth annealed epitaxial Fe/(001)GaAs interfaces journal September 2008
A low-temperature ultrahigh vacuum scanning tunneling microscope with a split-coil magnet and a rotary motion stepper motor for high spatial resolution studies of surface magnetism journal February 2000
Electronic structure and magnetism of Mn-doped GaN journal November 2003
Reconstructions of GaN(0001) and (0001̄) surfaces: Ga-rich metallic structures journal July 1998
Enabling in situ atomic-scale characterization of epitaxial surfaces and interfaces journal November 1998
A low-temperature spin-polarized scanning tunneling microscope operating in a fully rotatable magnetic field journal February 2009
Scanning tunneling microscopy on molecular-beam-epitaxy-grown GaAs(001) surfaces journal July 1992
Direct atomic structure determination of epitaxially grown films: Gd 2 O 3 on GaAs(100) journal November 2002
Construction and performance of a dilution-refrigerator based spectroscopic-imaging scanning tunneling microscope journal January 2013
Room temperature ferromagnetic properties of (Ga, Mn)N journal November 2001
Versatile sample handling system for scanning tunneling microscopy studies of molecular beam epitaxy journal May 1996
A beetle-like low-temperature scanning tunneling microscope in ultra-high vacuum journal February 1994
3He refrigerator based very low temperature scanning tunneling microscope journal February 1999
A low temperature scanning tunneling microscopy system for measuring Si at 4.2 K journal May 2010
Design and performance of an ultra-high vacuum scanning tunneling microscope operating at dilution refrigerator temperatures and high magnetic fields journal October 2013
Cross-sectional scanning tunneling microscopy and spectroscopy of semimetallic ErAs nanostructures embedded in GaAs
  • Kawasaki, Jason K.; Timm, Rainer; Buehl, Trevor E.
  • Journal of Vacuum Science & Technology B, Nanotechnology and Microelectronics: Materials, Processing, Measurement, and Phenomena, Vol. 29, Issue 3 https://doi.org/10.1116/1.3547713
journal May 2011
Structure and interface composition of Co layers grown on As-rich GaAs(001) c(4×4) surfaces
  • Lüdge, K.; Schultz, B. D.; Vogt, P.
  • Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, Vol. 20, Issue 4 https://doi.org/10.1116/1.1491993
journal January 2002
Cryogenic variable temperature ultrahigh vacuum scanning tunneling microscope journal September 2000
A modular designed ultra-high-vacuum spin-polarized scanning tunneling microscope with controllable magnetic fields for investigating epitaxial thin films journal May 2011
Efficient electrical spin injection from a magnetic metal/tunnel barrier contact into a semiconductor journal February 2002
A compact sub-Kelvin ultrahigh vacuum scanning tunneling microscope with high energy resolution and high stability journal October 2011
Atomic and Electronic Structure of the BaTiO 3 (001) ( 5 × 5 ) R 26.6 ° Surface Reconstruction journal December 2012

Cited By (3)

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Figures / Tables (18)