QUANTUM DNA

[ a launchpad on pump.fun · every coin born from a real quantum measurement ]

Born inside a quantum computer. A DNA no other coin has.

Name it. An IBM quantum chip has already put 24 qubits into a state that only exists inside it, and measured it thousands of times. Your coin takes the next reading in line, and that reading is retired: no other coin will ever get it. Those 24 ones and zeros become its colors, its emblem and its DNA, forever. Then it launches on pump.fun from your wallet, with the fee split locked.

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Every dot is one qubit of the real chip. The lit path is the 24 qubits this batch measured.

readings from the current batch—

Each row is one measurement of the chip, in the order it came out. Filled squares read 1, empty read 0. Coins take the next free row.

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[ born here · newest first ]

Every coin, its reading, its job.

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[ live · IBM Quantum ]

The chip that measures your coin.

Loading…
Current batch
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Readings in stock
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Next batch
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Chip time this window
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[ the three chips we can use · queue right now ]

[ how each qubit leaned in this batch ]

Each bar is one of the 24 qubits: how many of the readings came out as 1. A real chip is never perfectly balanced; that lean is part of the batch.

[ last batches ]

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156 qubits in IBM's heavy-hex layout, drawn from the chip's own coupling map. The lit path is the stretch this batch used.

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[ step by step, no jargon ]

How a coin is born here

  1. You name the coin. Name, ticker, one line about it. That is all we need from you.
  2. The chip has already measured. Every few hours we send one job to an IBM quantum computer: 24 qubits put into an entangled superposition and measured thousands of times. Each measurement is one reading, 24 ones and zeros that did not exist until the chip collapsed them. Your coin takes the next unused reading, in order. No re-rolls.
  3. The reading becomes the coin, and is retired. Colors, frame, texture and the lit path on the chip are all computed from those 24 bits, the same way every time. The bits are printed on the logo itself. No other coin will ever get that reading.
  4. You launch it from your wallet. One transaction on pump.fun: it creates the coin, locks the creator-fee split (—% to you, —% to the pad) and, if you want, makes your first buy. Nobody can change the split afterwards, not even us.
  5. The job stays on record. Every coin page shows the IBM job id, the chip, the time and the reading number. We keep the whole batch, every reading.

[ why this one is different ]

Most "quantum" coins are a word. A name, a formula with a quantum label, or a number from somewhere you cannot check.

Here the chip is real and the reading is yours. Every batch is one job on an IBM quantum computer: job id, chip, time and every reading published. Your coin is one of those readings, by number, forever.

Every DNA is unique. A reading that became a coin is retired for good. No two coins here will ever share a DNA; the site refuses it at the root.

Nobody picks the DNA. Not you, not us. The measurement decides the colors, the emblem and the bits on the logo. Same reading, same coin, every time.

The split is locked, not promised. The launch transaction writes the fee split on-chain and gives up the right to change it. The site checks that before listing the coin.

[ straight answers ]

Questions people ask

Is this a real quantum computer?

Yes. IBM's Heron processors, 156 superconducting qubits each. Every batch has a job id from IBM and a timestamp; you see them on the Chip tab, the Log and on each coin.

Why does one job serve many coins?

A job on the chip costs the same few seconds whether it measures once or four thousand times. So the chip measures thousands of readings at once and each coin gets its own line, in order. That is what makes it real and sustainable instead of a stunt for one coin.

Can I re-roll, or get the same DNA as another coin?

No and no. The chip hands you the next reading; the coin's DNA is decided by a quantum measurement, not by you or by us. And each reading becomes at most one coin, ever: repeats inside a batch are skipped, and a reading that became a coin is never handed out again.

Is it just a random number?

It is the outcome of measuring an entangled quantum state, the only kind of randomness physics calls fundamental. No formula produced it. And unlike a number from a formula, each reading is tied to a job id, a chip and a time.

What locks the fee split?

The launch transaction itself. It creates the coin, writes the split (—% to whoever launched, —% to the pad) into pump.fun's fee-sharing program and revokes the right to edit it. The site checks that on-chain before it lists the coin.

What happens when the chip time runs out?

IBM gives a fixed amount of free chip time per 28-day window; the counter on the Chip tab shows it. Readings already in stock keep launching coins. New batches wait for the window to refill.

Who holds my coin's keys?

You do. The coin is created by your wallet and the creator is your wallet. We never hold a key of yours.

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[ every batch the chip measured ]

The log

Measured (UTC)ChipIBM jobReadingsDistinctChip timeCoins
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[ pick a batch ]

Click a line to see the batch: the job, the qubits it used, how they leaned and the coins born from it.