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Your search for "phd position spin wave generation in quantum materials" yielded 26180 hits

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We demonstrate an improved technique to precisely localize inhomogeneities in turbid media by means of reconstructing diffuse photon-density wave interference from time-resolved transmittance measurements applying the Fourier transform. This interference can also be obtained in the reverse mode, that is using a single source and combining the signals detected at several locations. This increases t

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The covid-19 pandemic was characterized by a series of variants of concern, different strains of SARS-CoV-2 which had a serious impact on transmission. One of these, denoted Omicron, dominated in early 2022 and caused covid-19 cases to soar. The increased transmission during the Omicron wave triggered hospitals to further strengthen airborne precautions. The reason for this surge in cases during O

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Corrosion of steel components embedded in concrete is detrimental to the structural integrity and their intrinsic function,such as the leak-tightness of containment liners in nuclear reactor containment buildings. Detection of embedded linercorrosion is a challenging task due to the concrete’s heterogeneity and the large dimensions of containment buildings.This initial study explores early-stage d

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Date of the seminar: May 23rd, 2018 Course: ENTN39 Master’s Corporate Entrepreneurship and Innovation Internship and degree project (Master’s thesis 15 ECTS) Authors: Matilda Ljudén & Maximilian Schmidt Supervisor: Joakim Winborg Examiner: Sotaro Shibayama Keywords: Front End Innovation, Idea Generation, Creativity, Knowledge, Knowledge Management, Innovation, Social Networks, Explorative In

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The active manipulation of particle and cell trajectories in fluids by high-frequency standing surface acoustic waves (sSAW) allows to separate particles and cells systematically depending on their size and acoustic contrast. However, process technologies and biomedical applications usually operate with non-spherical particles, for which the prediction of acoustic forces is highly challenging and

Instructions On The Format Of The Application 2026 final

Instructions on the format of the application: Prepare your application by reviewing this information, below or on the foundation's website (recommended): https://www.matspaulssonstiftelserna.com/instructions-on-the-format-of-the- application-scientific-research/ The application is made in the DigiPlant application system via the Foundation's website, see more about creating an account and logging

https://www.intramed.lu.se/en/sites/intramed.lu.se.en/files/2026-03/Instructions%20on%20the%20format%20of%20the%20application%202026_final.pdf - 2026-07-24

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We program high-dimensional linear optical circuits within a commercial multi-mode fibre, turning it into a generalised multi-outcome measurement device, which allows us to both transport and certify high-dimensional entanglement within the transmission channel itself.

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The following thesis investigates the electron and photon transport in a microwave resonator coupled double quantum dot (DQD). The investigation and description of this system are done mathematically. The DQD is also treated uncoupled from the resonator, for a description without photon interaction. Mathematically the system is analyzed using a density matrix as well as a master equation approach.

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Treatment of met-myoglobin (Fe-III) with H2O2 gives rise to ferryl myoglobin, which is closely related to compound II in peroxidases. Experimental studies have given conflicting results for this species. In particular, crystallographic and extended x-ray absorption fine-structure data have shown either a short (similar to170 pm) or a longer (similar to190 pm) Fe-O bond, indicating either a double

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For quantum few-body systems, a method of spectral representation generated by specially extracted sub-Hamiltonians is developed. In this approach, the connections between the geometry of a base manifold, the spectral structure of sub-Hamiltonians, and the geometric characteristics of induced Hilbert bundles are investigated. The appropriate relations between connections on these Hilbert bundles a

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We present quantum path distributions of high-order harmonics produced by rare gas atoms interacting with an intense 810 nm laser field, obtained by numerical integration of the time-dependent Schrodinger equation within the single active electron approximation. We find that the distributions are sensitive to the atomic potentials, and differ from the distributions predicted by the strong field ap

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In this work, we report on an overview of recent results from Fourier transform photocurrent (FTPC) measurements in the infrared spectral region on ensembles of self-assembled InAs quantum dots embedded in a matrix of InP. In interband PC, clear signals related to the dots are observed. Comparing the PC- and PL spectra, we observe that the fundamental transition is absent in the PC spectra, which

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A method is developed for the combination of quantum chemical geometry optimizations and crystallographic structure refinement. The method is implemented by integrating the quantum chemical software Turbomole with the crystallographic software Crystallography and NMR System (CNS), using three small procedures transferring information between the two programs. The program (COMQUM-X)is used to study

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In conjugated polymers the concept of spectroscopic units belonging to different spatial segments of the chain, which are responsible for the spectroscopic properties of the polymer, has been used to explain the spectral heterogeneity and the excitation migration by (Forster type) hopping transfer. In the present work we study the possible mechanism of segmentation of polythiophene into spectrosco

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In this article, we present the results from photoconductivity measurements in the infrared spectral region (3-10 mum) on ensembles of self-assembled InAs quantum dots embedded in a matrix of InP. In the spectral distribution of the photocurrent, peaks are observed which we interpret in terms of transitions from the dots' ground- and first-excited states to the conduction band of the dots/matrix.