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Molecular dynamics simulation of crystal growth of lithium niobate in lithium niobosilicate glass
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Submission information
Submission Number:
146
Submission ID:
339
Submission UUID:
7e65911a-f7c6-4206-8250-fd6b45191ac5
Submission URI:
/form/project
Created:
Tue, 05/24/2022 - 12:41
Completed:
Tue, 05/24/2022 - 12:41
Changed:
Wed, 11/16/2022 - 15:10
Remote IP address:
130.215.45.247
Submitted by:
Keith Veenhuizen
Language:
English
Is draft:
No
Webform:
Project
Project Title
Molecular dynamics simulation of crystal growth of lithium niobate in lithium niobosilicate glass
Program
CAREERS
Project Image
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Tags
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Status
Halted
Project Leader
Project Leader
Keith Veenhuizen
Email
veenhuiz@lvc.edu
Mobile Phone
8622684605
Work Phone
717-867-6154
Project Personnel
Mentor(s)
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Student-facilitator(s)
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Mentee(s)
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Project Information
Project Description
DL_POLY is a molecular dynamics simulation tool for computing step-by-step molecular interactions using a given potential and material composition. We recently contributed to a joint computational-experimental project whose goal was determining a Nb-O interaction potential useful for simulations of both lithium niobosilicate glass and lithium niobate crystal [1]. Besides using this simulation for determination of glass structure, an interesting problem is simulating growth at a crystal-glass interface. The results will be compared to recent experimental results in the literature [2] to further understand the influence of the surrounding glass on crystal growth.
References
[1] Wei Sun, Keith Veenhuizen, Jacob Marsh, Volkmar Dierolf, and Himanshu Jain, Determination of the structure of lithium niobosilicate glasses by molecular dynamics simulation with a new Nb-O potential, Computational Materials Science, 207, 111307.
[2] Keith Veenhuizen, Collin Barker, Jacob Franklin, Sean McAnany, Bruce Aitken, Daniel Nolan, Volkmar Dierolf, and Himanshu Jain, The role of glass composition in the 3D laser fabrication of lithium niobate single crystal in lithium niobosilicate glass, Optical Materials, 128, 112380.
Project Information Subsection
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Project Institution
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Anchor Institution
CR-Penn State
Preferred Start Date
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Start as soon as possible.
No
Project Urgency
Already behind3Start date is flexible
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Final Report
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