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Fakkel, Stein (author)
Classical computer have difficulties simulating specific complex problems, therefore other computation options are being explored. One of these options is the quantum computer, which is expected to excel in various industries. The challenge for the quantum computer is scaling it up to a high number of qubits. The diamond-based quantum computer...
master thesis 2023
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Dubey, Aryan (author)
Demand for high density, high bandwidth, and low power Integrated Circuits (ICs) is rapidly increasing even as Moore's Law is starting to plateau. Among the new wave of technologies that are meant to continue the prevalent trend of semiconductor device scaling, 3D System Integration promises many advantages over traditional single-planar designs...
master thesis 2023
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van Rijs, Samantha (author), Westenbrink, Dagmar (author), Visser, Lars (author)
In this Bachelor graduation project, a 16x16 Single Photon Avalanche Diode (SPAD) array is designed in 40nm TSMC CMOS for diamond single Nitrogen Vacancy center array readout. It includes an active quenching and recharge circuit (AQC), a hold-off circuit for controllable dead-time and IO electronics for off-chip communication. The chip is part...
bachelor thesis 2023
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Britton, Sander (author), Nootenboom, Eva (author), Janssen, Martijn (author)
Quantum sensing technology has emerged as a promising field with superior sensitivity and accuracy in magnetic field sensing compared to conventional technologies. This breakthrough offers significant prospects in the biomedical sector, particularly in the realm of medical imaging. <br/><br/>This project focuses on the implementation of quantum...
bachelor thesis 2023
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Neji, Saliha (author)
Diamond color centers have been increasingly gaining attention in research due to their desirable optical properties that make them suitable for applications such as quantum computing, quantum sensing and quantum communication. However, the main challenge has been on-chip integration of diamond color centers with high scalability and high yield....
master thesis 2023
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van der Maas, Maurice (author)
Color centers in diamond offer exciting opportunities for implementing an effective solid-state spinphoton interface. Access to and control of spin-photon interaction can help realize a scalable, modular quantum computer using the color center spins. A large magnetic field is needed for splitting the color center spin states, enabling definition...
master thesis 2022
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Hermias, Jeffrel (author)
Modular quantum computer chip based on spin qubits in diamond will enable an increased connectivity, a high fidelity, and a low error-rate when the number of qubits increases. The high-quality diamond substrates have the maximum size in the order of mm2, preventing use of advanced semiconductor manufacturing line. Therefore, for a large-scale...
master thesis 2022
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Molenaar, Margo (author), Pacilly, Feike (author)
This report focuses on the design and implementation of both a detection system and an enclosure, which are designed to be used in a quantum random number generator. These parts are designed to be manufactured using off-the-shelf components to make the quantum random number generator affordable and accessible to a completely new user-group that...
bachelor thesis 2021
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Mouris, Roel (author)
Silicon accelerometers used in the automotive industry should be improved in resolution and accuracy. Exploiting quantum effects in diamond to improve sensing accuracy is a popular technique for nanoscale sensing applications. This thesis will present a new design concept for an accelerometer using these quantum effects for sensing on a...
master thesis 2019
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Li, Ye (author)
3-D chip integration is considered to be the best way for further increasing the number of qubits on chip, and also for integration of qubits and readout electronics. Works have been done to stack two wafers with superconductive interconnections as a demonstration for feasibility of 3-D qubit integration.But all of them use an extra layer of...
master thesis 2019
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Rangasamy, G. (author)
The use of quantum computer can dramatically increase the computation power when compared with a classical computer. This is achieved by the manipulation of qubits. Qubits are the basic unit of quantum computation, and assumes a superposition of the two classical states ’0’ and ’1’. Qubits can be realized in many ways, namely; Ion traps,...
master thesis 2016
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Barak, R. (author)
The recent implementation of single electron quantum dots (QDs) in semiconductor hetero-structures as quantum bits (Qbits) [1] disclosed a promising route for the forthcoming creation of the first quantum computers based on a large set of Qbits. The scaling up of Qbits would indeed exhibit the full potential of quantum computation. Confinement...
master thesis 2015
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Banerjee, S. (author)
This thesis has explored the possibility of using carbon nanotubes (CNT) as a novel material for through-silicon vias (TSV) in 3D-integrated circuits. With the steady downscaling trend of the semiconductor industry, a major limiting factor to the overall performance of the device is the delay from interconnects; a trend that is worsening over...
master thesis 2014
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Xu, Y. (author)
In this study, a new fabrication method was implemented to convert liquid silicon into silicon dioxide films through non-vacuum and roll-to-roll compatible processes at low temperatures. The electrical characterization of SiO2 films made from liquid silicon was reported for the first time.
master thesis 2013
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Schoof, W.W.A. (author), Van der Spree, S. (author)
Dit onderzoek is tot stand gekomen in nauwe samenwerking met het bacheloreindproject van mevrouw Ferouge en de heren de Andrade en Yntema. Het onderzoek richt zich op het fabriceren van een passieve sensor op een plastic substraat. Momenteel worden er op het Delft Institute of Microsystems and Nanoelectronics (DIMES) Technology Center nieuwe...
bachelor thesis 2013
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De Andrade, R. (author), Ferouge, A. (author), IJntema, W. (author)
Dit onderzoek richt zich op het fabriceren van een passieve sensor op een plastic substraat. Momenteel worden er op het Delft Institute of Microsystems and Nanoelectronics (DIMES) Technology Center nieuwe productietechnieken voor thin-film transistoren (TFT) op polyimide getest waarmee de kosten voor massale productie flink dalen. Deze nieuwe...
bachelor thesis 2013
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Trifunovic, M. (author)
Liquid silicon is found as the material combining both the advantages of high quality silicon devices and the low cost solution processing method. Single-Grain Thin-Film Transistors can be produced by Excimer Laser Annealing of the resulting film and grain location control by the µ-Czochralski process. Other works have used spin-coating and...
master thesis 2012
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Sharma, A. (author)
Flexible electronics is a fast emerging market and includes electronics fabricated on flexible substrates, large area displays, low cost and disposable electronics. Both research and commercial institutions around the world have been trying to develop low temperature processes which will enable fabrication of electronic devices on arbitrary...
master thesis 2012
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Naeimi, A. (author)
OLED is a current based device, which emitted amount of light depends on the current supplied to the device so steady current flow is needed. In Active Matrix Organic Light Emitting Diode (AMOLED) Display. TFTs are used as driving transistors for OLED. Because of the non uniformity of the TFTs, variation in threshold voltage and mobility has a...
master thesis 2011
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Zwetsloot, W. (author), Meerwijk, J.C. (author)
This thesis is based upon the business plan of R:eFlex, which is part of the Bachelor Graduation Project of TU Delft. R:eFlex is a start-company that wants to introduce electronic billboards using Epaper, which is currently under development at DIMES; the ‘Delft Institute of Microelectronics and Sub-micro-technology, affiliated to the TU Delft....
bachelor thesis 2010
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