Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology...
Transcript of Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology...
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Applied and Computational Topology
Advisor: Henry Adams
Joshua Mirth
Greenslopes – March 22, 2018
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Basics – Persistent Homology
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Basics – Persistent Homology
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Basics – Persistent Homology
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Basics – Persistent Homology
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Basics – Persistent Homology
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Basics – Persistent Homology
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Basics – Persistent Homology
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![Page 9: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/9.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 10: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/10.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 11: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/11.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 12: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/12.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 13: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/13.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 14: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/14.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 15: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/15.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 16: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/16.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 17: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/17.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 18: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/18.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 19: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/19.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 20: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/20.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 21: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/21.jpg)
Problems
• Applications:
◦ Biology and Medicine
◦ Chemistry
◦ Sensor networks and computer images
◦ Algorithms
• Algebraic Questions
◦ Group coefficients
◦ Multiparameter persistence
◦ Algebraic topology, category theory, . . .
• Geometric Questions
◦ Structure of simplicial complexes
◦ Recovery of manifolds
◦ Algebraic, combinatorial, and differential topology, metric
geometry, . . .
3
![Page 22: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/22.jpg)
My Projects
Theorem:
For a metric space X and sufficiently small r, the Vietoris–Rips
complex at radius r is homotopy equivalent to X.
(See Hausmann, Latschev, Adams and M.)
Conjecture: (Hausmann, 1995)
The higher homotopy groups of the Vietoris–Rips complex
successively vanish predictably as the radius is increased.
(Under study for geodesic spaces.)
Persistent homology fractal dimension (with Pattern Analysis
Lab).
4
![Page 23: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/23.jpg)
My Projects
Theorem:
For a metric space X and sufficiently small r, the Vietoris–Rips
complex at radius r is homotopy equivalent to X.
(See Hausmann, Latschev, Adams and M.)
Conjecture: (Hausmann, 1995)
The higher homotopy groups of the Vietoris–Rips complex
successively vanish predictably as the radius is increased.
(Under study for geodesic spaces.)
Persistent homology fractal dimension (with Pattern Analysis
Lab).
4
![Page 24: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/24.jpg)
My Projects
Theorem:
For a metric space X and sufficiently small r, the Vietoris–Rips
complex at radius r is homotopy equivalent to X.
(See Hausmann, Latschev, Adams and M.)
Conjecture: (Hausmann, 1995)
The higher homotopy groups of the Vietoris–Rips complex
successively vanish predictably as the radius is increased.
(Under study for geodesic spaces.)
Persistent homology fractal dimension (with Pattern Analysis
Lab).
4
![Page 25: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/25.jpg)
My Projects
Theorem:
For a metric space X and sufficiently small r, the Vietoris–Rips
complex at radius r is homotopy equivalent to X.
(See Hausmann, Latschev, Adams and M.)
Conjecture: (Hausmann, 1995)
The higher homotopy groups of the Vietoris–Rips complex
successively vanish predictably as the radius is increased.
(Under study for geodesic spaces.)
Persistent homology fractal dimension (with Pattern Analysis
Lab).
4
![Page 26: Applied and Computational Topologymirth/files/speed_talk.pdf · Applied and Computational Topology Advisor: Henry Adams Joshua Mirth Greenslopes { March 22, 2018. Basics { Persistent](https://reader030.fdocuments.in/reader030/viewer/2022041022/5ed2f786b371e76f1a462f5f/html5/thumbnails/26.jpg)
For more information. . .
Faculty:
• Henry Adams,
• Amit Patel,
• Chris Peterson,
• Michael Kirby.
• Pattern Analysis Lab
Students:
• Johnathan Bush,
• Alex McCleary
• Joshua Mirth,
• Dustin Sauriol,
• Shannon Stiverson.
References:
• Henry Adams and Joshua Mirth. Metric thickenings of Euclidean submanifolds.
arXiv:1709.02492, 2017.
• Justin Michael Curry. Topological data analysis and cosheaves. Japanese Journal of
Industrial and Applied Mathematics, July 2015.
• Jeane-Claude Hausmann. On the Vietoris–Rips Complexes and a Cohomology Theory
for Metric Spaces. In Prospects in Topology, number 138 in Annals of Mathematics
Studies, pages 175187. 1995.
• Janko Latschev. Vietoris-Rips complexes of metric spaces near a closed Riemannian
manifold. Archiv der Mathematik, 2001.
• Chad M. Topaz, Lori Ziegelmeier, and Tom Halverson. Topological Data Analysis of
Biological Aggregation Models. PLOS ONE, May 2015.
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