Uwe Barroso
Isinki University of Helsinki Finland

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Sustainability in Quantum Optics: Future Research in Renewable Energy Amina Intes; Uwe Barroso; Wolnough Cale
Journal of Tecnologia Quantica Vol. 1 No. 1 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/quantica.v1i1.894

Abstract

Quantum optics is a field that has shown great potential in developing renewable energy technology. The interaction between light and matter on the quantum scale opens up opportunities for higher energy efficiency and more sustainable energy sources. However, further research is needed to integrate the principles of quantum optics into technologies that can be widely applied in the renewable energy sector. This research explores how quantum optics-based technologies can be developed and integrated into renewable energy applications to increase efficiency and sustainability. This research seeks to identify and test various approaches in quantum optics that can improve renewable energy generation and storage methods. The methods used include laboratory experiments and computer simulations to test the effectiveness of various quantum optical configurations in enhancing the energy conversion process. A multi-disciplinary approach with collaboration between physicists, engineers, and materials experts is used to achieve a deeper understanding of the potential of this technology. The research results show that using quantum entanglement and non-linear phenomena in quantum optics can significantly improve the efficiency of solar energy collection and conversion. This technique has succeeded in increasing the conversion efficiency of solar cells from conventional models by 10 to 15 percent in laboratory conditions. The conclusions of this study confirm that quantum optics have significant potential to improve sustainability and efficiency in renewable energy technologies. With further research and development, quantum optics-based technologies could contribute to global efforts to reduce dependence on fossil fuels and tackle climate change. Thus, integrating quantum optical principles into renewable energy systems should be a significant focus in future research
Quantum Optics Research Prospects: Transformation Towards Faster Quantum Computing Uwe Barroso; Mahon Nitin; Snyder Bradford
Journal of Tecnologia Quantica Vol. 1 No. 2 (2024)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/quantica.v1i2.895

Abstract

Advancements in quantum computing have become a primary focus in modern computer science. However, one of the major challenges in creating more powerful quantum computers is developing more stable and efficient qubits. In this context, research in quantum optics offers game-changing solutions. By leveraging quantum physics principles and quantum optics technology, this research aims to transform the quantum computing landscape by creating more stable and faster qubits. The goal of this study is to explore the potential of quantum optics in creating more stable and efficient qubits for quantum computing. This research method involves a combination of experimental and theoretical approaches. Data obtained from these experiments will be analyzed using advanced theoretical methods to understand the quantum properties of the produced qubits. The results indicate that the quantum optics approach can be key in creating more stable and faster qubits for quantum computing. Experiments have successfully demonstrated better control over qubits in photonic systems and compressed matter, producing qubits with higher reliability. Theoretical analysis also reveals a deeper understanding of the quantum properties of the produced qubits, opening the door for further development in this field. The conclusion of this research shows that quantum optics has great potential to transform quantum computing by creating more stable and faster qubits. By continuing to develop quantum optics technology and deepening the understanding of quantum properties of compressed matter and photonic systems, quantum computing can be taken to a new level.
Product Development of Unique Clothing Learning Media to Stimulate Fine Motor Skills of 4-5 Years Old Children Heni Nopiyanti; Imam Tabroni; Uwe Barroso; Amina Intes
Journal of Computer Science Advancements Vol. 1 No. 1 (2023)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.55849/jsca.v1i1.452

Abstract

The purpose of this study was to create a learning model product in the form of unique clothing to stimulate fine motor skills of children aged 5-6 years in Purwakarta. The research method used a mixed method with a research and development (R&D) design. The research process starts from making a product design design using media with materials around, in the form of used gallon bottles, design validation, revision, making products, limited product trials, making products, stage 1 product revision, main field trials, revision 2, operational field trials, product revision 3, dissemination and product marketing. The results of research on the development of unique clothing learning models to stimulate fine motor skills are more creative and innovative learning models. The results of the research in the form of children's fine motor movement skills are getting better and children's fine muscles are getting stronger and more skillful. This unique clothing model gives children the interest to be able to play it so that fine motor skills are stimulated in a fun way. The technique supports children's understanding of attitudes, motivation and curiosity towards psychomotor activities (fine motor). This broad trial was conducted three times and experienced good improvement, so it is hoped that this model can be disseminated to PAUD institutions in Purwakarta and surrounding areas.  
Development of Time Passage Media to Stimulate Symbolic Thinking and Problem Solving in 5-6 Years Old Children Mimah Mimah; Imam Tabroni; Uwe Barroso; Amina Intes
Journal of Computer Science Advancements Vol. 1 No. 3 (2023)
Publisher : Yayasan Adra Karima Hubbi

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.70177/jsca.v1i3.481

Abstract

Learning media is only a tool for the success of the teaching and learning process, as a component of the success of the teaching and learning process, the provision of learning media is a must. The purpose of the time passage is to introduce the concept of time, introduce the count of 1-10, and how to turn the hands of the clock. Research using research and development models from Borg & Gall. Research location at RA Ibnu Zain Respondents 4 students of Ra Ibnu Zain. The overall results of this study state that the Time Aisle Media can be used as learning media referring to the results of the validation test, the first trial pre-test 31.25% and the second trial post-test 72.5% showed there was development as expected in the time aisle media in problem solving and symbolic thinking at Ra Ibnu Zain.