Physical requirements for scaling up network-based biocomputation
(2021) In New Journal of Physics 23(10).- Abstract
The high energy consumption of electronic data processors, together with physical challenges limiting their further improvement, has triggered intensive interest in alternative computation paradigms. Here we focus on network-based biocomputation (NBC), a massively parallel approach where computational problems are encoded in planar networks implemented with nanoscale channels. These networks are explored by biological agents, such as biological molecular motor systems and bacteria, benefitting from their energy efficiency and availability in large numbers. We analyse and define the fundamental requirements that need to be fulfilled to scale up NBC computers to become a viable technology that can solve large NP-complete problem instances... (More)
The high energy consumption of electronic data processors, together with physical challenges limiting their further improvement, has triggered intensive interest in alternative computation paradigms. Here we focus on network-based biocomputation (NBC), a massively parallel approach where computational problems are encoded in planar networks implemented with nanoscale channels. These networks are explored by biological agents, such as biological molecular motor systems and bacteria, benefitting from their energy efficiency and availability in large numbers. We analyse and define the fundamental requirements that need to be fulfilled to scale up NBC computers to become a viable technology that can solve large NP-complete problem instances faster or with less energy consumption than electronic computers. Our work can serve as a guide for further efforts to contribute to elements of future NBC devices, and as the theoretical basis for a detailed NBC roadmap.
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- author
- Zhu, Jingyuan LU ; Korten, Till ; Kugler, Hillel ; Van Delft, Falco ; M nsson, Alf ; Reuter, Danny ; Diez, Stefan and Linke, Heiner LU
- organization
- publishing date
- 2021-10
- type
- Contribution to journal
- publication status
- published
- subject
- keywords
- molecular motor, nanofabrication, network-based biocomputation, NP-complete problem, parallel computing
- in
- New Journal of Physics
- volume
- 23
- issue
- 10
- article number
- 105004
- publisher
- IOP Publishing
- external identifiers
-
- scopus:85118677738
- ISSN
- 1367-2630
- DOI
- 10.1088/1367-2630/ac2a5d
- language
- English
- LU publication?
- yes
- additional info
- Publisher Copyright: © 2021 The Author(s). Published by IOP Publishing Ltd on behalf of the Institute of Physics and Deutsche Physikalische Gesellschaft.
- id
- fbffcbc1-063d-44cf-ba2d-9512339e7368
- date added to LUP
- 2021-11-22 12:52:06
- date last changed
- 2023-11-09 00:06:30
@article{fbffcbc1-063d-44cf-ba2d-9512339e7368, abstract = {{<p>The high energy consumption of electronic data processors, together with physical challenges limiting their further improvement, has triggered intensive interest in alternative computation paradigms. Here we focus on network-based biocomputation (NBC), a massively parallel approach where computational problems are encoded in planar networks implemented with nanoscale channels. These networks are explored by biological agents, such as biological molecular motor systems and bacteria, benefitting from their energy efficiency and availability in large numbers. We analyse and define the fundamental requirements that need to be fulfilled to scale up NBC computers to become a viable technology that can solve large NP-complete problem instances faster or with less energy consumption than electronic computers. Our work can serve as a guide for further efforts to contribute to elements of future NBC devices, and as the theoretical basis for a detailed NBC roadmap.</p>}}, author = {{Zhu, Jingyuan and Korten, Till and Kugler, Hillel and Van Delft, Falco and M nsson, Alf and Reuter, Danny and Diez, Stefan and Linke, Heiner}}, issn = {{1367-2630}}, keywords = {{molecular motor; nanofabrication; network-based biocomputation; NP-complete problem; parallel computing}}, language = {{eng}}, number = {{10}}, publisher = {{IOP Publishing}}, series = {{New Journal of Physics}}, title = {{Physical requirements for scaling up network-based biocomputation}}, url = {{http://dx.doi.org/10.1088/1367-2630/ac2a5d}}, doi = {{10.1088/1367-2630/ac2a5d}}, volume = {{23}}, year = {{2021}}, }