Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery
A novel design of nanoscopic volume transmitter and receiver for drug delivery system using a PANDA ring resonator is proposed. By controlling some suitable parameters, the optical vortices (gradient optical fields/wells) can be generated and used to form the trapping tools in the same way as the op...
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my.utm.294552022-01-31T08:41:28Z http://eprints.utm.my/id/eprint/29455/ Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery Jalil, Muhammad Arif Tasakorn, Metha Suwanpayak, Nathaporn Ali, Jalil Yupapin, Preecha P. Q Science A novel design of nanoscopic volume transmitter and receiver for drug delivery system using a PANDA ring resonator is proposed. By controlling some suitable parameters, the optical vortices (gradient optical fields/wells) can be generated and used to form the trapping tools in the same way as the optical tweezers. By using the intense optical vortices generated within the PANDA ring resonator, the nanoscopic volumes (drug) can be trapped and moved (transport) dynamically within the wavelength router or network. In principle, the trapping force is formed by the combination between the gradient field and scattering photons, which is reviewed. The advantage of the proposed system is that a transmitter and receiver can be formed within the same system (device), which is called a transceiver, which is available for nanoscopic volume (drug volume) trapping and transportation (delivery). Institute of Electrical and Electronics Engineers Inc. 2011 Article PeerReviewed Jalil, Muhammad Arif and Tasakorn, Metha and Suwanpayak, Nathaporn and Ali, Jalil and Yupapin, Preecha P. (2011) Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery. IEEE Transactions on Nanobioscience, 10 (2). pp. 106-112. ISSN 1536-1241 http://dx.doi.org/10.1109/TNB.2011.2142421 10.1109/TNB.2011.2142421 |
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Q Science Jalil, Muhammad Arif Tasakorn, Metha Suwanpayak, Nathaporn Ali, Jalil Yupapin, Preecha P. Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery |
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A novel design of nanoscopic volume transmitter and receiver for drug delivery system using a PANDA ring resonator is proposed. By controlling some suitable parameters, the optical vortices (gradient optical fields/wells) can be generated and used to form the trapping tools in the same way as the optical tweezers. By using the intense optical vortices generated within the PANDA ring resonator, the nanoscopic volumes (drug) can be trapped and moved (transport) dynamically within the wavelength router or network. In principle, the trapping force is formed by the combination between the gradient field and scattering photons, which is reviewed. The advantage of the proposed system is that a transmitter and receiver can be formed within the same system (device), which is called a transceiver, which is available for nanoscopic volume (drug volume) trapping and transportation (delivery). |
format |
Article |
author |
Jalil, Muhammad Arif Tasakorn, Metha Suwanpayak, Nathaporn Ali, Jalil Yupapin, Preecha P. |
author_facet |
Jalil, Muhammad Arif Tasakorn, Metha Suwanpayak, Nathaporn Ali, Jalil Yupapin, Preecha P. |
author_sort |
Jalil, Muhammad Arif |
title |
Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery |
title_short |
Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery |
title_full |
Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery |
title_fullStr |
Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery |
title_full_unstemmed |
Nanoscopic volume trapping and transportation using a PANDA ring resonator for drug delivery |
title_sort |
nanoscopic volume trapping and transportation using a panda ring resonator for drug delivery |
publisher |
Institute of Electrical and Electronics Engineers Inc. |
publishDate |
2011 |
url |
http://eprints.utm.my/id/eprint/29455/ http://dx.doi.org/10.1109/TNB.2011.2142421 |
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