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Han Hsu
Professor
Department of Physics
https://orcid.org/0000-0003-1205-4770
Email
hanhsu
ncu.edu
tw
Website
https://www.phy.ncu.edu.tw/faculty/%E5%BE%90%E7%BF%B0-han-hsu/
h-index
1231
Citations
17
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2001
2024
Research activity per year
Overview
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Network
Projects
(9)
Research output
(33)
Datasets
(1)
Similar Profiles
(6)
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Dive into the research topics where Han Hsu is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
Spin Crossover
64%
Low Spin
60%
Perovskite
57%
Higher Spin
54%
Ferrous Iron
53%
Intermediate Spin State
52%
Hyperfine Interactions
49%
Hubbard U
46%
Fe3+
42%
Spin State
40%
First-principles Study
39%
Spin State Crossover
34%
Lower Mantle
33%
LaCoO3
29%
Aluminous
29%
Post-perovskite
29%
State Interactions
29%
B-site
28%
Fe2+
27%
Mg-perovskite
27%
Earth's Lower Mantle
26%
Quadrupole Splitting
25%
LSDA+U
24%
High Pressure
23%
First-principles Calculations
22%
Low-spin State
21%
Spin Transition
21%
Local Density Approximation
20%
Crossover Interaction
19%
Multi-walled Carbon Nanotubes (MWCNTs)
19%
Impurities
19%
Bridgmanite
17%
High Temperature
15%
Overpressure
15%
Density Functional Theory
15%
Spin-spin
15%
Elastic Properties
14%
Bulk Modulus
14%
Pressure Range
13%
Ferromagnetism
13%
Fe Excess
13%
Ferropericlase
13%
High-spin States
12%
Mantle Minerals
12%
Superconductivity
12%
Optical Absorption
12%
(Mg,Fe)O
12%
Cobalt
11%
Nanotubes
11%
Electronic Charge
11%
Chemistry
Spin State
100%
Local-Density Approximation
44%
First Principle
40%
Hyperfine Interaction
39%
Quadrupole Splitting
25%
Spin Transition
23%
Ferromagnetism
21%
Density Functional Theory
19%
Bulk Modulus
14%
Cobalt
11%
Metalloid
9%
Nanotube
9%
Size Effect
9%
Single Walled Nanotube
9%
Copper(II) Oxide
9%
Graphene
9%
Superconductivity
9%
Nanoparticle
9%
Volume
9%
Magnesium
8%
Ambient Reaction Temperature
8%
Aluminum
7%
Electronic State
7%
Electric Field Gradient
7%
Cobalt Ion
7%
Equations of State
6%
Iron Ion
6%
Electronic Band Structure
5%