» Authors » Tobias Kiessling

Tobias Kiessling

Explore the profile of Tobias Kiessling including associated specialties, affiliations and a list of published articles. Areas
Snapshot
Articles 8
Citations 64
Followers 0
Related Specialties
Top 10 Co-Authors
Published In
Affiliations
Soon will be listed here.
Recent Articles
1.
Chen A, Brand H, Helbig T, Hofmann T, Imhof S, Fritzsche A, et al.
Nat Commun . 2023 Feb; 14(1):622. PMID: 36739281
Curved spaces play a fundamental role in many areas of modern physics, from cosmological length scales to subatomic structures related to quantum information and quantum gravity. In tabletop experiments, negatively...
2.
Tielrooij K, Principi A, Saleta Reig D, Block A, Varghese S, Schreyeck S, et al.
Light Sci Appl . 2022 Nov; 11(1):315. PMID: 36316317
Achieving efficient, high-power harmonic generation in the terahertz spectral domain has technological applications, for example, in sixth generation (6G) communication networks. Massless Dirac fermions possess extremely large terahertz nonlinear susceptibilities...
3.
Lenggenhager P, Stegmaier A, Upreti L, Hofmann T, Helbig T, Vollhardt A, et al.
Nat Commun . 2022 Jul; 13(1):4373. PMID: 35902574
The Laplace operator encodes the behavior of physical systems at vastly different scales, describing heat flow, fluids, as well as electric, gravitational, and quantum fields. A key input for the...
4.
Sauer F, Fritsch A, Grosser S, Pawlizak S, Kiessling T, Reiss-Zimmermann M, et al.
Soft Matter . 2021 Nov; 17(47):10744-10752. PMID: 34787626
Biomechanical changes are critical for cancer progression. However, the relationship between the rheology of single cells measured ex-vivo and the living tumor is not yet understood. Here, we combined single-cell...
5.
Kotwal T, Moseley F, Stegmaier A, Imhof S, Brand H, Kiessling T, et al.
Proc Natl Acad Sci U S A . 2021 Aug; 118(32). PMID: 34349024
The transfer of topological concepts from the quantum world to classical mechanical and electronic systems has opened fundamentally different approaches to protected information transmission and wave guidance. A particularly promising...
6.
Stegmaier A, Imhof S, Helbig T, Hofmann T, Lee C, Kremer M, et al.
Phys Rev Lett . 2021 Jun; 126(21):215302. PMID: 34114871
We employ electric circuit networks to study topological states of matter in non-Hermitian systems enriched by parity-time symmetry PT and chiral symmetry anti-PT (APT). The topological structure manifests itself in...
7.
Gyger M, Rose D, Stange R, Kiessling T, Zink M, Fabry B, et al.
Opt Express . 2011 Oct; 19(20):19212-22. PMID: 21996863
The Microfluidic Optical Stretcher (MOS) has previously been shown to be a versatile tool to measure mechanical properties of single suspended cells. In this study we combine optical stretching and...
8.
Kreysing M, Kiessling T, Fritsch A, Dietrich C, Guck J, Kas J
Opt Express . 2008 Oct; 16(21):16984-92. PMID: 18852807
The optical cell rotator (OCR) is a modified dual-beam laser trap for the holding and controlled rotation of suspended dielectric microparticles, such as cells. In contrast to optical tweezers, OCR...