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#quantumphysics

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📝 Important note:
These visuals are illustrative only—not precise physical depictions of magnitudes or forces involved. Actual conditions during inflation involved extreme energies (near ~10¹⁶ GeV), densities, and scales far beyond intuitive visualization. My illustrations aim purely for conceptual clarity.

Enjoy exploring our cosmic origins! ✨🔭🌠
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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🕳️ Clip 8: Transition to Primordial Universe (Black Holes Form)
This visualization illustrates tiny density fluctuations collapsing into primordial black holes (PBHs) within the hot early universe plasma—originally proposed by Hawking & Carr (1970s). PBHs could influence cosmic structure and potentially explain dark matter. Observational searches ongoing, including data from JWST, LIGO, and future space missions.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqmfmsabfbfsr
🔗 Primordial Black Holes (Carr, Hawking) arxiv.org/abs/2002.12778
🔭 Evidence: Ongoing searches via gravitational lensing (JWST), gravitational waves (LIGO), and large-scale surveys (DESI).
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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🔥 Clip 7: Reheating Begins
Depicted here is "reheating," where the inflaton’s potential energy rapidly converts into hot plasma of standard model particles, marking the Big Bang's fiery start (~10²⁷ Kelvin initially). This transition phase, predicted by cosmologists including Linde, remains theoretically robust yet poorly understood.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqmfg100eb7r3
🔗 Reheating theory overview arxiv.org/abs/1001.2600
🛰️ Evidence: Consistent with nucleosynthesis abundances and CMB measurements from Planck.
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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🎢 Clip 6: Slow-Roll Transition
This clip illustrates "slow-roll" inflation, introduced by Andrei Linde. After bubble nucleation, the inflaton field rolls slowly toward a true vacuum. Inflation gradually ends as the energy density decreases. "Slow-roll" inflation precisely matches observational constraints from CMB temperature anisotropies.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqn1yrwcf8b9k
🔗 Slow-roll inflation (Linde) arxiv.org/abs/hep-th/9405187
🔭 Evidence: Precise fits to Planck and WMAP observations of the CMB spectrum.
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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🌀 Clip 5: Bubble Expansion
Visualizing the true vacuum bubble rapidly expanding into the false vacuum. This phase boundary would propagate at enormous speeds, eventually dominating space. This idea relates to Guth's "bubble universe" scenario and the multiverse hypothesis (eternal inflation) proposed by Paul Steinhardt and Alexander Vilenkin.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqmf0h6begta7
🔗 Eternal Inflation (Steinhardt, Vilenkin) scientificamerican.com/article
🛰️ Evidence: Indirect—no direct detection yet; remains theoretical.
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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💥 Clip 4: Tunneling Begins (Bubble Nucleation)
This clip represents the theoretical nucleation of a true vacuum bubble, transitioning from a high-energy false vacuum—a scenario described by Sidney Coleman & Frank De Luccia in the 1980s. Quantum tunneling initiates bubble formation.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqmdvxawe8pv2
🔗 Coleman-De Luccia tunneling journals.aps.org/prd/abstract/
🔭 Evidence: Indirectly consistent with structure formation data; currently theoretical and not directly observable. #Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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🌌 Clip 3: Quantum Fluctuations Appear
Tiny quantum fluctuations in the inflaton field are illustrated here. Inflation stretched these quantum ripples to enormous scales, seeding all cosmic structures (galaxies, stars). Theoretical predictions by Viatcheslav Mukhanov and Stephen Hawking matched detailed observations.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqn1ftfbf70tz
🔗 Quantum fluctuations as cosmic seeds (Mukhanov) arxiv.org/abs/astro-ph/0303077
🔭 Evidence: Fluctuations precisely measured in CMB by Planck and WMAP, and confirmed by large-scale galaxy surveys like DESI. DESI Project desi.lbl.gov
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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🚀 Clip 2: False Vacuum Expansion
Here we depict exponential growth driven by the false vacuum’s immense potential energy—space expanded faster than the speed of light, increasing by a factor of at least ~10⁶⁰ in ~10⁻³⁶ seconds. This rapid inflation resolves problems like flatness and horizon issues, as proposed by Guth and further developed by Andrei Linde and Paul Steinhardt.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqmdevs9fpbtt
🔗 Cosmic Inflation theory (Linde, Steinhardt) scientificamerican.com/article
🔭 Evidence: Measurements of flatness and isotropy from WMAP & Planck satellites. NASA WMAP map.gsfc.nasa.gov
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

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✨ Clip 1: The Inflaton Field
This clip illustrates a hypothetical quantum scalar field, the inflaton, which cosmologists propose triggered cosmic inflation. Before the Big Bang, space might have existed in a high-energy "false vacuum" state, a concept developed by Alan Guth (1980) to explain rapid expansion.
🎬 Watch the full-res Sora videos here! sora.com/g/gen_01jqmd66m5e1gvw
🔗 Inflationary Universe (Guth, 1980) pmc.ncbi.nlm.nih.gov/articles/
🛰️ Evidence: Cosmic Microwave Background (CMB) uniformity observed by Planck satellite. ESA Planck mission esa.int/Science_Exploration/Sp
#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics

✨ Thread Intro: Visualizing Cosmic Inflation and the Big Bang ✨

Ever wondered how our universe began? 🤔

I'm exploring cosmic inflation—the rapid expansion of space driven by the mysterious inflaton field. My short, illustrative video clips represent key stages of this theory, starting from a hypothetical quantum field through inflation, quantum fluctuations, reheating into Big Bang plasma, and formation of tiny primordial black holes (PBHs).

Earlier, I shared a visualization showing how some of these PBHs might have evaporated into Hawking radiation, leaving subtle imprints (Hawking relics) that possibly influenced the formation of the first stars and galaxies. hachyderm.io/@suzannealdrich/1

👇 Follow along to see each step illustrated clearly and explained scientifically—complete with references to current theories and observational evidence from missions like JWST, DESI, Planck, and more!

Note: These visuals are conceptual illustrations—not literal representations of the extreme energies and forces involved.

#Cosmology #Inflation #BigBang #PrimordialBlackHoles #QuantumPhysics #Astrophysics 🌌🚀🕳️

⚛️ 💻 To get around the constraints of quantum physics, PhD student Mathieu Padlewski in collaboration with Hervé Lissek and Romain Fleury at EPFL’s Laboratory of Wave Engineering, have built a new acoustic system to study the way the minuscule atoms of condensed matter talk together. They hope to one day build an acoustic version of a quantum computer.

#QuantumPhysics #AcousticSystems #PhysicsResearch

Read more: go.epfl.ch/GXJ-en

go.epfl.ch · Listen to quantum atoms talk together thanks to acousticsTo get around the constraints of quantum physics, EPFL researchers have built a new acoustic system to study the way the minuscule atoms of condensed matter talk together. They hope to one day build an acoustic version of a quantum computer.

Two more days before the abstract submission portal closes. Join us for *Synthetic Sentience* in Perth, Australia, 16-18 July 2025 – the 5th Politics of the Machines conference.
Check the website. It features seven tracks to which you can submit.
All abstracts are due on March 29. pomconference.org/pom-perth-20
-
Paul Thomas, Chris Speed and I are looking forward to your submissions to
Track 01.

#artscience #art #systemicdesign
#indigenous #quantumphysics
#cybernetics

As physics has functioned as a model…in our scientific thinking a ‘crisis’ in physics has repercussions on science as a whole and enlivens the great and eternal questions of philosophy. In physics these questions found one original solution in the Copenhagen School’s interpretation of quantum physics… When it comes to understanding the history of quantum physics it is impossible to exaggerate the role of Niels Bohr… His genius was one of combining practical skills with a strong social or ‘dialogical’ stance. … The social side can best be described as his liking for a person-to-person dialogue and his disregard for the conventional separation of the professional and personal domains: he loved to take his colleagues and students for long walks…, or to his summerhouse…etc. ‘to really get to know them’.
—Suzanne Gieser, The Innermost Kernel
#physics #quantumphysics #history #bohr #nielsbohr

The Physics of Presence

Linking Physics and Meditation

Continued research in quantum physics bridges the gap between science and meditation, showing in deeper ways the interconnectedness of all things. As scientists explore the fundamental principles of quantum mechanics, they uncover insights that challenge our traditional understanding of reality and resonate with ancient philosophies, emphasizing unity and consciousness. This ongoing exploration highlights how every particle is not just a separate entity but a part of a vast, intricate web of existence, deepening our awareness of the profound relationship between the observer and the observed. By integrating these findings with mindfulness practices, we cultivate a richer understanding of our place within the universe, encouraging a holistic perspective that fosters personal growth and collective harmony.

Observation

For some time scientists have known about the significance of the observer and their impact on outcomes, demonstrating that the physical world is not all there is. A deep, unseen field of energy responds to our thoughts and actions, influencing our personal experiences and the collective consciousness that binds us. This interplay between observation and reality suggests that our perceptions shape the very fabric of existence, opening doors to possibilities beyond physical matter’s limitations. By recognizing this profound connection, we empower ourselves to tap into more significant potential, harnessing the energy around us to create positive change in our lives and those of others. Understanding this dynamic relationship encourages us to reflect on our intentions and the reality we wish to manifest.

“In all my research I have never come across matter. To me the term matter implies a bundle of energy which is given form by an intelligent spirit.”

Max Planck

Quantum Concepts Related to Meditation

  • The Observer Effect: In quantum mechanics, the act of observation can influence the behavior of particles. Mindfulness teaches us to observe our thoughts and feelings without judgment, which, in turn, can alter our perceptions and experiences.
  • Quantum Entanglement: the mysterious phenomenon where two particles remain connected no matter the distance, symbolizing the interconnectedness we feel through mindfulness and meditation, emphasizing the unity of all things.
  • Uncertainty Principle: This principle states that we cannot know a particle’s position and momentum with absolute certainty simultaneously. It parallels how mindfulness encourages us to embrace uncertainty and flow with life’s unpredictability.
Photo by Ruslan Alekso on Pexels.com

Practice

Engaging in mindful exercises and gently opening ourselves to the wonders of the quantum realm can cultivate a deeper understanding of ourselves and the natural world around us.

Meditation as a Practice of Presence

Here are some simple practices that unite the quantum with meditation:

  • Observing Thoughts: Compare the mind to a quantum field where thoughts, like particles, appear and disappear in an ever-changing dance of consciousness. Meditation allows us to observe these “particles” without attachment or judgment, much like a quantum physicist observes an experiment with keen awareness and neutrality. This practice fosters a deeper understanding of the nature of reality and the transient qualities of our mental processes, enabling us to cultivate mindfulness and presence in our daily lives.
  • Connecting with the Universe: A mindfulness practice could evoke the feeling of entanglement, reminding us of our profound connection to others and the vast cosmos around us. Engaging in this practice invites moments of reflection where we can consider our place within the universe, nurturing a sense of unity with all beings and affirming the interconnectedness of existence. Through such awareness, we cultivate deeper relationships with ourselves and those we encounter, ultimately fostering a greater sense of peace and understanding.
  • Embracing Impermanence: The uncertainty principle can be a metaphor for the transient nature of emotions and experiences, aligning with meditation’s focus on acceptance. By recognizing that emotions are fleeting and continually evolving, we can cultivate a more profound sense of mindfulness that encourages us to live in the moment. This awareness allows us to fully experience our emotions without becoming attached to them, fostering a more profound understanding of the interconnectedness of all experiences in our lives.

Scientific Validation

Recent studies* have shown how mindfulness rewires the brain and reduces age-related degeneration, highlighting its profound impact on cognitive health. By practicing mindfulness regularly, individuals can enhance their focus and emotional well-being and promote neuroplasticity, which is the brain’s ability to adapt and reorganize itself. This form of mental training has been linked to slowing cognitive decline associated with aging**, helping to maintain memory retention and cognitive functions. Furthermore, incorporating mindfulness techniques into daily routines can improve quality of life as people become more aware of their thoughts and feelings, ultimately fostering a greater sense of peace and stability in an increasingly chaotic world.

Read more on *PubMed and **Nature

Practical Mindfulness

Photo by Vishva Patel on Pexels.com

Clearly, you don’t need to be a physicist to practice mindfulness. The point is to awaken curiosity and awe for the universe and to find stillness amid its vast complexity. By embracing mindfulness, anyone can tap into the profound beauty surrounding them, fostering a deeper connection with the world and themselves. This practice invites us to explore our thoughts and feelings with an open heart, cultivating a sense of wonder that encourages us to appreciate the intricate details of life. In this way, mindfulness becomes a bridge to understanding the cosmos and the richness of our inner landscapes, helping us navigate challenges while remaining grounded in the present moment.

Begin Gently

This practice can be as simple as taking a moment to notice and become aware of yourself and your surroundings, including all the sensory experiences around you, such as the subtle sounds in the background, the textures of objects you touch, and the scents that float through the air. Engaging fully with your environment can enhance your appreciation for the present. If your mind begins to wander, gently guide it back to the present moment, allowing yourself a brief pause to reconnect with the act of noticing, perhaps by taking a deep breath or observing the rhythm of your thoughts with curiosity instead of judgment. This intentional shift can foster a greater sense of calm, clarity, and connection to the world around you.

Only on InsightTimer

Once you’ve explored the additional resources, consider taking a moment for a quantum meditation; it can be a wonderful way to connect with the infinite potential within your mind and spirit.

*Lardone A, Liparoti M, Sorrentino P, Rucco R, Jacini F, Polverino A, Minino R, Pesoli M, Baselice F, Sorriso A, Ferraioli G, Sorrentino G, Mandolesi L. Mindfulness Meditation Is Related to Long-Lasting Changes in Hippocampal Functional Topology during Resting State: A Magnetoencephalography Study. Neural Plast. 2018 Dec 18;2018:5340717. doi: 10.1155/2018/5340717. PMID: 30662457; PMCID: PMC6312586.

**Yue, W.L., Ng, K.K., Koh, A.J. et al. Mindfulness-based therapy improves brain functional network reconfiguration efficiency. Transl Psychiatry 13, 345 (2023). https://doi.org/10.1038/s41398-023-02642-9