Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Douglas Carmean"'
Autor:
Robert Carlson, Paul Berndt, Gagan Gupta, David Ward, Karin Strauss, Hsing-Yeh Parker, Siena D. Ang, Douglas Carmean, Patrick Garvan, Sergey Yekhanin, Luis Ceze, Jake A. Smith, Christopher N. Takahashi, Rouse Richard P, Bichlien H. Nguyen
Publikováno v:
Science Advances
Description
A demonstration of DNA synthesis control at over 1000x higher density shows the path to large scale DNA data storage.
Synthetic DNA is an attractive medium for long-term data storage because of its density, ease of copying, sust
A demonstration of DNA synthesis control at over 1000x higher density shows the path to large scale DNA data storage.
Synthetic DNA is an attractive medium for long-term data storage because of its density, ease of copying, sust
Publikováno v:
Proceedings of the IEEE. 107:63-72
Moore’s law may be slowing, but our ability to manipulate molecules is improving faster than ever. DNA could provide alternative substrates for computing and storage as existing ones approach physical limits. In this paper, we explore the implicati
Publikováno v:
IEEE Micro. 37:98-104
Storing data in DNA molecules offers extreme density and durability advantages that can mitigate exponential growth in data storage needs. This article presents a DNA-based archival storage system, performs wet lab experiments to show its feasibility
Publikováno v:
MICRO
A quantum computer consists of quantum bits (qubits) and a control processor that acts as an interface between the programmer and the qubits. As qubits are very sensitive to noise, they rely on continuous error correction to maintain the correct stat
Publikováno v:
MEMSYS
A quantum computer can solve fundamentally difficult problems by utilizing properties of quantum bits (qubits). It consists of a quantum substrate, connected to a conventional computer, termed as control processor. A control processor can manipulate
Autor:
Cyrus Rashtchian, Luis Ceze, Georg Seelig, Sharon Newman, Randolph Lopez, Gagan Gupta, John Mulligan, Konstantin Makarychev, Robert Carlson, Karin Strauss, Sergey Yekhanin, Christopher N. Takahashi, Yuan-Jyue Chen, Lee Organick, Douglas Carmean, Kendall Stewart, Bichlien H. Nguyen, Miklos Z. Racz, Hsing Yeh Parker, Siena Dumas Ang, Parikshit Gopalan, Govinda M. Kamath
Publikováno v:
Nature biotechnology. 36(3)
200 MB of digital data is stored in DNA, randomly accessed and recovered using an error-free approach. Synthetic DNA is durable and can encode digital data with high density, making it an attractive medium for data storage. However, recovering stored
Autor:
Gagan Gupta, Randolph Lopez, Georg Seelig, Konstantin Makarychev, Sharon Newman, Siena Dumas Ang, John Mulligan, Douglas Carmean, Parikshit Gopalan, Christopher N. Takahashi, Robert Carlson, Karin Strauss, Yuan-Jyue Chen, Sergey Yekhanin, Hsing Yeh Parker, Luis Ceze, Lee Organick, Cyrus Rashtchian, Kendall Stewart, Bichlien H. Nguyen, Miklos Z. Racz, Govinda M. Kamath
Current storage technologies can no longer keep pace with exponentially growing amounts of data. 1 Synthetic DNA offers an attractive alternative due to its potential information density of ~ 1018 B/mm3, 107 times denser than magnetic tape, and poten
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::23ef6503dea5f0b49b46e69334299061
https://doi.org/10.1101/114553
https://doi.org/10.1101/114553
Autor:
Randolph Lopez, Christopher N. Takahashi, Luis Ceze, Govinda M. Kamath, Lee Organick, John Mulligan, Sergey Yekhanin, Douglas Carmean, Hsing Yeh Parker, Siena Dumas Ang, Georg Seelig, Sharon Newman, Konstantin Makarychev, Gagan Gupta, Parikshit Gopalan, Robert Carlson, Karin Strauss, Yuan-Jyue Chen, Cyrus Rashtchian, Kendall Stewart, Bichlien H. Nguyen, Miklos Z. Racz
Publikováno v:
Nature Biotechnology. 36:660-660
Nat. Biotechnol. 36, 242–248 (2018); published online 19 February 2018; corrected after print 8 March 2018 In the version of this article initially published, the references in the reference list were in the wrong order; the references have been re
Publikováno v:
ASPLOS
Demand for data storage is growing exponentially, but the capacity of existing storage media is not keeping up. Using DNA to archive data is an attractive possibility because it is extremely dense, with a raw limit of 1 exabyte/mm 3 (109 GB/mm 3 ), a
Publikováno v:
CHI PLAY
This design research explored ways to support emotional expression in interactive games played in a public, social setting. Affective gaming has incorporated emotional assessment to tailor feedback during gameplay, but as a result, distills complex e