Literature DB >> 23721106

High-precision nanoscale temperature sensing using single defects in diamond.

P Neumann1, I Jakobi, F Dolde, C Burk, R Reuter, G Waldherr, J Honert, T Wolf, A Brunner, J H Shim.   

Abstract

Measuring local temperature with a spatial resolution on the order of a few nanometers has a wide range of applications in the semiconductor industry and in material and life sciences. For example, probing temperature on the nanoscale with high precision can potentially be used to detect small, local temperature changes like those caused by chemical reactions or biochemical processes. However, precise nanoscale temperature measurements have not been realized so far owing to the lack of adequate probes. Here we experimentally demonstrate a novel nanoscale temperature sensing technique based on optically detected electron spin resonance in single atomic defects in diamonds. These diamond sensor sizes range from a micrometer down to a few tens of nanometers. We achieve a temperature noise floor of 5 mK/Hz(1/2) for single defects in bulk sensors. Using doped nanodiamonds as sensors the temperature noise floor is 130 mK/Hz(1/2) and accuracies down to 1 mK for nanocrystal sizes and therefore length scales of a few tens of nanometers. This combination of precision and position resolution, combined with the outstanding sensor photostability, should allow the measurement of the heat produced by chemical interactions involving a few or single molecules even in heterogeneous environments like cells.

Year:  2013        PMID: 23721106     DOI: 10.1021/nl401216y

Source DB:  PubMed          Journal:  Nano Lett        ISSN: 1530-6984            Impact factor:   11.189


  47 in total

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2.  Nanoscale thermal imaging of dissipation in quantum systems.

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3.  Applied physics: Hybrid sensors ring the changes.

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5.  Probing and manipulating embryogenesis via nanoscale thermometry and temperature control.

Authors:  Joonhee Choi; Hengyun Zhou; Renate Landig; Hai-Yin Wu; Xiaofei Yu; Stephen E Von Stetina; Georg Kucsko; Susan E Mango; Daniel J Needleman; Aravinthan D T Samuel; Peter C Maurer; Hongkun Park; Mikhail D Lukin
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6.  Observing bulk diamond spin coherence in high-purity nanodiamonds.

Authors:  Helena S Knowles; Dhiren M Kara; Mete Atatüre
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Review 7.  Recent Developments of Nanodiamond Quantum Sensors for Biological Applications.

Authors:  Yingke Wu; Tanja Weil
Journal:  Adv Sci (Weinh)       Date:  2022-03-27       Impact factor: 17.521

8.  Quantum monitoring of cellular metabolic activities in single mitochondria.

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Journal:  Sci Adv       Date:  2021-05-19       Impact factor: 14.136

Review 9.  Improving surface and defect center chemistry of fluorescent nanodiamonds for imaging purposes--a review.

Authors:  Andreas Nagl; Simon Robert Hemelaar; Romana Schirhagl
Journal:  Anal Bioanal Chem       Date:  2015-07-29       Impact factor: 4.142

10.  Fluorescent nanodiamonds encapsulated by Cowpea Chlorotic Mottle Virus (CCMV) proteins for intracellular 3D-trajectory analysis.

Authors:  Yingke Wu; Shuqin Cao; Md Noor A Alam; Marco Raabe; Sandra Michel-Souzy; Zuyuan Wang; Manfred Wagner; Anna Ermakova; Jeroen J L M Cornelissen; Tanja Weil
Journal:  J Mater Chem B       Date:  2021-07-21       Impact factor: 6.331

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