Difference between revisions of "Template:Publications"

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''Publications using the Nanofab''
 
''Publications using the Nanofab''
 
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SEE THE BOTTOM OF THIS PAGE FOR INSTRUCTIONS ON ADDING NEWS ITEMS.
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<!------------- Select Publications ---------------->
 
<!------------- Select Publications ---------------->
  
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== [https://doi.org/10.1116/6.0001030 Highly Selective and Vertical Etch of Silicon Dioxide using Ruthenium Films as an Etch Mask] ==
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''William J. Mitchell, Brian J. Thibeault, Demis D. John, and Thomas E. Reynolds''
  
== Quantum supremacy using a programmable superconducting processor ==
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[https://doi.org/10.1116/6.0001030 Journal of Vacuum Science and Technology A, '''39''', 043204, May 27th 2021]
F. Arute, K. Arya, ... Harmut Neven, John M. Martinis
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A similar process flow can be found at the [[ICP_Etching_Recipes#SiO2_Etching_.28Fluorine_ICP_Etcher.29|Fluorine-ICP Recipe Page]].
 +
 
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== [https://doi.org/10.1364/OL.394121 Deuterated silicon dioxide for heterogeneous integration of ultra-low-loss waveguides] ==
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''Warren Jin, Demis D. John, Jared F. Bauters, Tony Bosch, Brian J. Thibeault, and John E. Bowers''
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[https://doi.org/10.1364/OL.394121 Optics Letters Vol. 45, Issue 12, pp. 3340-3343 (2020)]
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== [https://www.nature.com/articles/s41586-019-1666-5 Quantum supremacy using a programmable superconducting processor] ==
 +
''F. Arute, K. Arya, ... Harmut Neven, John M. Martinis''
  
 
[https://www.nature.com/articles/s41586-019-1666-5 Nature, volume 574, pages 505–510 (2019)]
 
[https://www.nature.com/articles/s41586-019-1666-5 Nature, volume 574, pages 505–510 (2019)]
  
== An optical-frequency synthesizer using integrated photonics ==
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== [https://www.nature.com/articles/s41586-018-0065-7 An optical-frequency synthesizer using integrated photonics] ==
D. T. Spencer, T. Drake, ... John E. Bowers, Scott A. Diddams, Scott B. Papp
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''D. T. Spencer, T. Drake, ... John E. Bowers, Scott A. Diddams, Scott B. Papp''
  
 
[https://www.nature.com/articles/s41586-018-0065-7 Nature, volume 557, pages 81–85 (2018)]
 
[https://www.nature.com/articles/s41586-018-0065-7 Nature, volume 557, pages 81–85 (2018)]
  
== Continuous-wave operation of m-plane GaN-based vertical-cavity surface-emitting lasers with a tunnel junction intracavity contact ==
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== [https://aip.scitation.org/doi/10.1063/1.5007746 Continuous-wave operation of m-plane GaN-based vertical-cavity surface-emitting lasers with a tunnel junction intracavity contact] ==
C.A. Forman, S.G. Lee, ... S.P. DenBaars, S. Nakamura
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''C.A. Forman, S.G. Lee, ... S.P. DenBaars, S. Nakamura''
  
 
[https://aip.scitation.org/doi/10.1063/1.5007746 Applied Physics Letters, Vol. 112, Issue 11, 2018]
 
[https://aip.scitation.org/doi/10.1063/1.5007746 Applied Physics Letters, Vol. 112, Issue 11, 2018]
  
== DARKNESS: A Microwave Kinetic Inductance Detector Integral Field Spectrograph for High-contrast Astronomy ==
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== [https://iopscience.iop.org/article/10.1088/1538-3873/aab5e7/meta DARKNESS: A Microwave Kinetic Inductance Detector Integral Field Spectrograph for High-contrast Astronomy] ==
S.R. Meeker, B.A. Mazin, ... G. Vasisht, E. Serabyn
+
''S.R. Meeker, B.A. Mazin, ... G. Vasisht, E. Serabyn''
  
 
[https://iopscience.iop.org/article/10.1088/1538-3873/aab5e7/meta Astronomical Society of the Pacific, Volume 130, Issue 988, pp. 065001 (2018)]
 
[https://iopscience.iop.org/article/10.1088/1538-3873/aab5e7/meta Astronomical Society of the Pacific, Volume 130, Issue 988, pp. 065001 (2018)]
  
== Dielectrophoretic Nanoparticle Aggregation for On-Demand Surface Enhanced Raman Spectroscopy Analysis ==
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== [https://doi.org/10.1021/acs.analchem.8b00510 Dielectrophoretic Nanoparticle Aggregation for On-Demand Surface Enhanced Raman Spectroscopy Analysis] ==
R. Salemmilani, B.D. Piorek, A.W. Fountain, M. Moskovits, C.D. Meinhart
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''R. Salemmilani, B.D. Piorek, A.W. Fountain, M. Moskovits, C.D. Meinhart''
  
[https://doi.org/10.1021/acs.analchem.8b00510 Anal. Chem. 2018, 90, 13, 7930-7936]
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[https://doi.org/10.1021/acs.analchem.8b00510 Analytical Chemistry, 90, 13, 7930-7936 (2018)]
  
= Demonstration of Constant 8 W/mm Power Density at 10, 30, and 94 GHz in State-of-the-Art Millimeter-Wave N-Polar GaN MISHEMTs =
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== [https://doi.org/10.1109/TED.2017.2770087 Demonstration of Constant 8 W/mm Power Density at 10, 30, and 94 GHz in State-of-the-Art Millimeter-Wave N-Polar GaN MISHEMTs] ==
B. Romanczyk, S. Wienecke, M. Guidry, H. Li, E. Ahmadi, X. Zheng, S. Keller, U.K. Mishra
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''B. Romanczyk, S. Wienecke, M. Guidry, H. Li, E. Ahmadi, X. Zheng, S. Keller, U.K. Mishra''
  
[https://doi.org/10.1109/TED.2017.2770087 IEEE Transactions On Electron Devices, Vol. 65, No. 1, Jan 2018]
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[https://doi.org/10.1109/TED.2017.2770087 IEEE Transactions On Electron Devices, Vol. 65, No. 1 (2018)]
  
  
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====== HOW TO ADD NEWS ITEMS ======
 
====== HOW TO ADD NEWS ITEMS ======
  
* You can copy/paste the example below for a new news item.
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* You can copy/paste the example below for a new item.
* Use level 5 heading for each item (5 equal signs surrounding the title) - they will show up as separate RSS items this way.  (This looks best on the Wiki homepage)
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* Use level 2 heading for each item (2 equal signs surrounding the title) - they will show up as separate RSS items this way.
* You must add a user signature at the end of each post via four tildes: ~~~~. Required for the RSS plugin to determine the timestamp, or else post goes to the end of the RSS feed.
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* Use double-slash:  //  at start of new lines - makes display on the Samsung Display look a lot better, since it strips newlines.
 
* Optional: After saving the page, delete the name after the two dashes "--" and delete the "[[(talk)...]]" link.
 
  
* URL to the RSS feed via FeedBurner (for Samsung display): http://feeds.feedburner.com/UCSBNanofab-Announcements?format=xml
 
 
* URL to the RSS feed directly from Wiki: https://www.nanotech.ucsb.edu/wiki/index.php?title=Template:Publications&action=feed&feed=rss
 
* URL to the RSS feed directly from Wiki: https://www.nanotech.ucsb.edu/wiki/index.php?title=Template:Publications&action=feed&feed=rss
  
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******** EXAMPLE OF A NEW POST ********
 
******** EXAMPLE OF A NEW POST ********
  
== NanoFab making LN2 icecream ==
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Tomorrow the NanoFab will be serving liquid nitrogen ice cream.
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== Title of Publication ==
// ~~~~
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A. List, of, authors ... Use, Ellipses, I.F. Needed
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[http://URL.TO.PUBLIHERS.SITE/or/DOI  scientific citation, vol. 1, page 1-2, (2019)]
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************* (end of example) **************
 
************* (end of example) **************
The ~~~~ will be replaced with your username & timestamp after you submit the post.
 
 
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Revision as of 21:10, 23 September 2021

Publications using the Nanofab

Highly Selective and Vertical Etch of Silicon Dioxide using Ruthenium Films as an Etch Mask

William J. Mitchell, Brian J. Thibeault, Demis D. John, and Thomas E. Reynolds

Journal of Vacuum Science and Technology A, 39, 043204, May 27th 2021

A similar process flow can be found at the Fluorine-ICP Recipe Page.

Deuterated silicon dioxide for heterogeneous integration of ultra-low-loss waveguides

Warren Jin, Demis D. John, Jared F. Bauters, Tony Bosch, Brian J. Thibeault, and John E. Bowers

Optics Letters Vol. 45, Issue 12, pp. 3340-3343 (2020)

Quantum supremacy using a programmable superconducting processor

F. Arute, K. Arya, ... Harmut Neven, John M. Martinis

Nature, volume 574, pages 505–510 (2019)

An optical-frequency synthesizer using integrated photonics

D. T. Spencer, T. Drake, ... John E. Bowers, Scott A. Diddams, Scott B. Papp

Nature, volume 557, pages 81–85 (2018)

Continuous-wave operation of m-plane GaN-based vertical-cavity surface-emitting lasers with a tunnel junction intracavity contact

C.A. Forman, S.G. Lee, ... S.P. DenBaars, S. Nakamura

Applied Physics Letters, Vol. 112, Issue 11, 2018

DARKNESS: A Microwave Kinetic Inductance Detector Integral Field Spectrograph for High-contrast Astronomy

S.R. Meeker, B.A. Mazin, ... G. Vasisht, E. Serabyn

Astronomical Society of the Pacific, Volume 130, Issue 988, pp. 065001 (2018)

Dielectrophoretic Nanoparticle Aggregation for On-Demand Surface Enhanced Raman Spectroscopy Analysis

R. Salemmilani, B.D. Piorek, A.W. Fountain, M. Moskovits, C.D. Meinhart

Analytical Chemistry, 90, 13, 7930-7936 (2018)

Demonstration of Constant 8 W/mm Power Density at 10, 30, and 94 GHz in State-of-the-Art Millimeter-Wave N-Polar GaN MISHEMTs

B. Romanczyk, S. Wienecke, M. Guidry, H. Li, E. Ahmadi, X. Zheng, S. Keller, U.K. Mishra

IEEE Transactions On Electron Devices, Vol. 65, No. 1 (2018)