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Saturday, September 26, 202668 days to the Dice Letter centennialNo physics degree or shared belief required.
GOD PLAYS DICE™The magazine of big questions

THE QUESTION LIBRARY ORIGINS

Why is there something rather than nothing?

Physics can trace the universe back a long way, but every answer starts with something already there, so here is what science, faith and philosophy each offer.

Oil portrait of a pale, round-faced older man with a long, dark, curly wig falling past his shoulders. He wears a white cravat and a brown velvet cloak draped across his body, and he looks toward the viewer with a slight smile against a dark brown background.
Gottfried Wilhelm Leibniz (1646–1716), painted around 1695 by Christoph Bernhard Francke. In 1714 Leibniz wrote that the first question we can fairly ask is why there is something rather than nothing.Christoph Bernhard Francke, Herzog Anton Ulrich-Museum Braunschweig, via Wikimedia Commons · Public domainImage source ↗

THE SHORT ANSWER

Nobody knows, and science alone may never be able to say. Physics traces our universe back to a hot, dense start about 13.8 billion years ago, and it has ideas about what came before. But every physics answer starts with something already there, such as laws, fields or energy. Why there is anything at all is a question for philosophy and faith. Many believers point to God. Others say the universe may simply exist. Careful thinkers stand on every side.

  • The German thinker Gottfried Leibniz asked the question in this form in 1714, and his answer was God.
  • Physics describes how our universe grew from a hot, dense state, but scientists are not sure what came before that start.
  • The quantum vacuum that some physicists call “nothing” is full of fields and energy, so philosophers say it is still something.
  • The cosmological argument, built by Muslim, Christian and other thinkers, says the universe depends on a being that must exist: God.
  • Others, like the philosopher Bertrand Russell, answered that the universe is “just there, and that’s all.”

WHERE THE EVIDENCE STANDS

How sure are we?

  • EstablishedOur universe grew from a hot, dense early state about 13.8 billion years ago.NASA’s overview of the universe describes cosmic inflation around 13.8 billion years ago, the hot early universe, and the microwave background glow from about 380,000 years later.
  • Not supportedPhysics has shown that the universe came from absolutely nothing.Physics models of a universe “from nothing,” such as Alexander Vilenkin’s 1982 paper and Lawrence Krauss’s 2012 book, start from the laws of quantum physics. The Stanford Encyclopedia of Philosophy and the philosopher David Albert point out that a quantum vacuum is still something.
  • Open questionWhat came before cosmic inflation, if anything, and what set it off.NASA says scientists are not sure what came before inflation or what powered it. Proposals exist, such as Vilenkin’s 1982 quantum tunneling model, but none is settled.
  • Beyond scienceWhy there is anything at all, rather than nothing.The Stanford Encyclopedia notes that no experiment could support “there is nothing,” and that any explanation that starts from something already takes something for granted.
  • Beyond scienceGod is the reason there is something rather than nothing.The cosmological argument of Ibn Sina, al-Ghazali, Aquinas and Leibniz is a philosophical argument, not a lab result. Hume, Kant and Russell raised objections, and the Stanford Encyclopedia shows the debate is still active.
What the labels mean

WHAT WE DON’T KNOW YET

Nobody knows what, if anything, came before the hot early universe. Philosophers still disagree about whether the question has an answer at all, and whether that answer is God, a universe that must exist, or no reason.

WHAT WOULD CHANGE THIS ANSWER

A confirmed physics theory of what came before the Big Bang would push the science part of this answer further back. It would still start from laws or stuff that already exist, so the deepest question would stay outside science.

Nobody knows. It may be the biggest question there is, and science alone may never settle it. But we can say clearly what science has found, where it stops, and how people of faith and of no faith try to go further.

The question is old. In 1714, the German thinker Gottfried Leibniz wrote that the first question we can fairly ask is why there is something rather than nothing. After all, he said, nothing is simpler and easier than something. Leibniz believed everything has a reason. His answer was that the reason for the universe lies outside it, in God.

Many people hope physics will answer it instead. Physics has done a lot. It traces our universe back to a hot, dense state about 13.8 billion years ago. Many cosmologists think a sudden stretch of space, called inflation, came just before that. But NASA says scientists are not sure what came before inflation or what powered it.

Some physicists go further. They describe how a universe could appear from “nothing.” Look closely, though, and their “nothing” is something: empty space full of quantum fields and energy, ruled by laws of physics. Philosophers ask where the fields and laws came from. That is the real puzzle. Any answer that starts with something already there has not yet explained why there is anything at all.

So people answer in different ways. Many believers say God is the reason, a being that does not need a cause. Some skeptics say the universe may simply exist, with no further reason. Others think the question may have no answer that words can give. Each view has thoughtful defenders and serious critics.

We label the ultimate question Beyond science. That does not make it silly or off limits. It means experiments cannot decide it. You are welcome here, whatever you believe.

THE LONG ANSWER

What can physics say, and where does it stop?

Physics can say a great deal about how our universe changed over time. NASA’s overview describes a brief burst of stretching called cosmic inflation about 13.8 billion years ago. When it stopped, its energy turned into matter and light: the hot Big Bang. About 380,000 years later, the universe cooled enough to let light travel freely. That glow is still detectable today. For the very early steps, see our story What Happened in the First Second After the Big Bang?

Before inflation, the trail goes cold. NASA says plainly that scientists aren’t sure what came before inflation or what powered it. Even NASA’s Ask an Astrophysicist team, answering a reader, said it would not describe the Big Bang’s hydrogen as coming from “nothing.” It came from a hot, dense state full of energy.

Some physicists have tried to go further back. In 1982, the physicist Alexander Vilenkin published a model in which a universe is created by quantum tunneling “from literally nothing.” In his 2012 book A Universe from Nothing, the cosmologist Lawrence Krauss argued that the laws of quantum physics can explain why there is something rather than nothing. The Stanford Encyclopedia of Philosophy notes that Frank Wilczek, and Stephen Hawking with Leonard Mlodinow, have made similar claims.

These ideas are real physics, and they are interesting. But what do they mean by “nothing”? In quantum physics, the vacuum, or empty space, is not empty. As the Stanford Encyclopedia puts it, vacuums have energy, and energy can turn into mass. So a quantum vacuum is still something. The philosopher David Albert, author of a book on quantum mechanics, made this point in a well-known 2012 review of Krauss’s book in The New York Times. A vacuum, he wrote, is a particular arrangement of quantum fields. Particles popping out of it are no more a creation from nothing than a fist appearing when you close your fingers. Albert also asked where the laws of quantum physics came from. He noted that Krauss admits, near the end of the book, that he takes those basic laws for granted.

Krauss has a reply, and it deserves a fair hearing. As the Stanford Encyclopedia reports, he argues that science often makes progress by giving old words sharper meanings. On his view, swapping an unclear question for one physics can study is an improvement, not a trick. Critics answer that it is a different question. Either way, the physics answers describe how one state of the world can turn into another. They do not explain why there is a world, or laws, at all.

What do answers with God, and without God, say?

The cosmological argument. This is the classic answer from faith, and it has a long history. The Stanford Encyclopedia traces it through philosophers of the Islamic world such as Ibn Sina (about 980–1037), the Christian thinker Thomas Aquinas, and Leibniz. One version starts from the fact that the things around us might not have existed. They are contingent, meaning they depend on something else. Leibniz argued that the reason for the whole chain of such things must lie outside the chain, in a being that must exist. That being, he wrote, is what we call God.

A second version, the kalām argument, comes from Muslim theologians such as al-Ghazali (1058–1111). It says that whatever begins to exist has a cause, and the universe began to exist, so it has a cause. Today the philosopher William Lane Craig defends it. He argues that something cannot come out of nothing.

The brute-fact view. Many other thinkers answer that the universe needs no reason beyond itself. A brute fact is a fact with no further explanation. The philosopher Bertrand Russell said in 1948 that the universe is “just there, and that’s all.” The Stanford Encyclopedia notes that Stephen Hawking later said much the same.

Other views. Some philosophers think something was always the likely outcome. The philosopher Peter van Inwagen argued that there are endless ways for there to be something, and at most one way for there to be nothing. So the chance of nothing is zero, even though nothing is not strictly impossible. Others, like Ludwig Wittgenstein, saw the question less as a puzzle and more as an expression of awe that the world exists at all.

What is the strongest objection to each answer?

To the physics answers: they start with laws and fields. As Albert argued, that leaves the deepest question untouched.

To the God answers: David Hume and Immanuel Kant attacked the cosmological argument in the 1700s. Critics also ask a simple question. If God can exist with no cause, why can’t the universe? The Stanford Encyclopedia reports that some philosophers, such as Bede Rundle, argue exactly that. Defenders reply that the argument never said everything needs a cause. Only things that might not have existed need one, and God, on their view, is not that kind of thing. Critics of the kalām argument, such as Wes Morriston, say its first step is not as clear as it looks.

To the brute-fact view: it seems to give up on explaining. Leibniz’s principle of sufficient reason, the idea that everything has a reason, lies behind the God answer. The Stanford Encyclopedia calls it both powerful and controversial. If you accept it, a brute fact looks like a gap. If you reject it, the God answer loses its main support.

There is a trap under all of this. The Stanford Encyclopedia points out that we usually explain one thing by pointing to another thing. That cannot work here. If you say something exists because a designer wanted it, you have already assumed the designer. For this reason, some philosophers think the question cannot be answered at all.

What do people often get wrong?

“Science has shown the universe came from nothing.” The physics models start with quantum laws and fields. As shown above, that is not nothing in the full sense.

“The Big Bang explains where everything came from.” The Big Bang theory describes how the early universe grew and cooled. NASA says scientists are not sure what came before inflation.

“Only religious people ask this.” Philosophers of every kind take it seriously. The Stanford Encyclopedia calls it, so far, a live question.

“The God answer falls apart at ‘who made God?’” Defenders say the argument applies only to things that might not have existed. You may or may not find that convincing, but it is a real reply.

Where can people of faith and skeptics agree?

  • The science is shared. Believers and nonbelievers read the same evidence about the Big Bang. Neither side needs to fear it.
  • Physics has limits here. Even Krauss admits his account takes the basic laws of quantum physics for granted, so where those laws come from is still an open puzzle for everyone.
  • Humility fits. The philosopher William James, quoted in the Stanford Encyclopedia, called the question of being the darkest in all philosophy. He wrote that all of us are beggars here, and no school can look down on another.
  • Wonder is common ground. Whether you see a Creator, a brute fact, or an open mystery, the fact that anything exists can stop you in your tracks.

How can you check this yourself?

  • Ask what “nothing” means. When a video or book says the universe came from nothing, check whether that “nothing” has laws, fields, energy or space in it.
  • Read the Stanford Encyclopedia. Its entries on Nothingness and the Cosmological Argument are free and lay out both sides.
  • Read Leibniz himself. His short 1714 essay Principles of Nature and Grace asks the question in section 7. A free modern English version is on Early Modern Texts.
  • Read both sides of the Krauss debate. Read Albert’s review, then look for Krauss’s replies, and judge whether they are answering the same question.

The answer stays the same after all this detail. Physics can trace the universe a long way back, but it always starts with something. Why there is anything at all remains beyond science, and it is a question people of every belief can ask together. For more on how the two fit, read Science and Faith: Enemies, Strangers, or Partners?

THREE THINGS TO REMEMBER

  1. Physics traces the universe back a long way, but every physics answer starts with something already there.
  2. A quantum vacuum is full of fields and energy, so it is not nothing in the full sense.
  3. Why there is anything at all is beyond science, and thoughtful people answer it with God, a brute fact, or an open mystery.

WHERE THE AUTHOR’S RESEARCH TOUCHES THIS

Author’s hypothesis. In the Introduction to his book, Ricardo Maldonado, author of GOD PLAYS DICE, writes that his lifelong question began at age seven, lying awake and unable to stop asking why anything existed at all. His HD-Blast idea is a proposal about how our universe began: our hot beginning may be the aftermath of a brief release of energy in a higher-dimensional space. The book calls it a falsifiable hypothesis, which means specific future data could prove it wrong.

Even if that hypothesis turned out right, it would not answer the question on this page. The Introduction says the author cannot yet tell what released that energy, and that no one has observed such an event. In Chapter 2, he writes that even if time begins at the Big Bang, the question does not disappear: it becomes “why this beginning?” And in Chapter 10, he pictures the laws of physics as a table on which the dice roll. Like the other physics ideas on this page, the hypothesis starts from a larger stage that is already there. Why there is any stage at all stays beyond science.

WORDS WORTH KNOWING

Cosmic inflation
A proposed burst of extremely fast stretching of space at the very start of our universe, before the hot Big Bang.
Quantum vacuum
The lowest-energy state of the quantum fields that fill space. It has no particles, but it is not empty.
Contingent
Something that exists but might not have existed, so its existence depends on something else.
Cosmological argument
A family of arguments that reason from the existence of the universe to a first cause or necessary being, usually identified with God.
Brute fact
A fact that has no further explanation. Some thinkers say the existence of the universe is one.
Principle of sufficient reason
The idea, defended by Leibniz, that everything has a reason or cause. It is powerful and still debated.

Sources & further reading

  1. Nothingness (Roy Sorensen) ↗Section 1: no experiment could support ‘There is nothing’; van Inwagen’s probability argument. Section 3: Leibniz’s bias for simplicity; the explanatory trap (the Universal Designer example); some conclude the question is unanswerable. Section 5: the question is ‘so far, a live question’; William James, ‘All of us are beggars here’. Section 10: vacuums have energy and are not empty; Wilczek (1980), Hawking and Mlodinow (2010) and Krauss (2012) claim this answers the question; Krauss defends the change of meaning; David Albert’s reply. Wittgenstein on the question as awe.
  2. Principles of Nature and Grace, Based on Reason (G. W. Leibniz, 1714; trans. Jonathan Bennett) ↗Section 7: the first question we can fairly ask is why there is something rather than nothing, since nothing is simpler and easier than something. Section 8: the sufficient reason for the universe cannot be found in the series of contingent things. The 1714 date is confirmed by the SEP Leibniz entry’s chronology.
  3. Cosmological Argument (Bruce Reichenbach) ↗History: Ibn Sina (c. 980–1037), Aquinas, al-Ghazali (1058–1111) and the kalām argument, Leibniz (Monadology §§32–38), Clarke; Hume and Kant’s attacks; necessary beings as brute facts; Russell (1948) ‘just there, and that’s all’, reiterated by Hawking (1987); Rundle on a necessary universe; Craig’s causal principle and Morriston’s criticism.
  4. Principle of Sufficient Reason (Yitzhak Melamed and Martin Lin) ↗Opening: ‘a powerful and controversial philosophical principle stipulating that everything must have a reason, cause, or ground’.
  5. ‘A Universe From Nothing,’ by Lawrence M. Krauss (review by David Albert) ↗Vacuum states are arrangements of quantum fields; the fist-and-fingers comparison; where did the laws of quantum mechanics come from; Krauss acknowledges taking quantum principles for granted. Book details: Free Press, 202 pp. The live page blocks scripted access (HTTP 403); read from the Internet Archive copy of 2025-10-25 (snapshot 20251025101926). Albert calls Krauss a well-known cosmologist; Albert is a professor of philosophy at Columbia and author of “Quantum Mechanics and Experience.”
  6. Creation of Universes from Nothing (Alexander Vilenkin) ↗Abstract (via INSPIRE-HEP): a cosmological model in which the universe is created by quantum tunneling ‘from literally nothing’ into a de Sitter space, then evolves along inflationary lines. The abstract also says the model evolves along the lines of the inflationary scenario.
  7. Universe overview ↗Inflation around 13.8 billion years ago; ‘Scientists aren’t sure what came before inflation or what powered it’; hot big bang; microwave background from about 380,000 years after the big bang. Also: ‘Cosmologists think inflation explains many aspects of the universe we observe today’.
  8. Ask an Astrophysicist: Cosmology questions ↗Answer to a student: the Big Bang’s hydrogen did not come from ‘nothing’ but from a very hot, dense state dominated by radiation.
  9. GOD PLAYS DICE, Volume OneIntroduction: the question began at age seven, ‘unable to stop asking why anything existed at all’; the hot beginning may be the aftermath of a brief release of energy in a larger-dimensional arena; ‘I cannot yet tell you what released that energy; no one has observed such an event’; ‘a specific, falsifiable hypothesis’. Chapter 2: even if time begins at the Big Bang, the question becomes ‘why this beginning?’. Chapter 10: ‘The laws of physics are the table.’

KEEP ASKING

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